Abstract

The quest for extrasolar planets and their characterization as well as studies of fundamental physics on cosmological scales rely on capabilities of high-resolution astronomical spectroscopy. A central requirement is a precise wavelength calibration of astronomical spectrographs allowing for extraction of subtle wavelength shifts from the spectra of stars and quasars. Here, we present an all-fiber, 400 nm wide near-infrared frequency comb based on electro-optic modulation with 14.5 GHz comb line spacing. Tests on the high-resolution, near-infrared spectrometer GIANO-B show a photon-noise limited calibration precision of < 10 cms as required for Earth-like planet detection. Moreover, the presented comb provides detailed insight into particularities of the spectrograph such as detector inhomogeneities and differential spectrograph drifts. The system is validated in on-sky observations of a radial velocity standard star (HD221354) and telluric atmospheric absorption features. The advantages of the system include simplicity, robustness and turn-key operation, features that are valuable at the observation sites.

© 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

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2018 (1)

T. J. Kippenberg, A. L. Gaeta, M. Lipson, and M. L. Gorodetsky, “Dissipative Kerr solitons in optical microresonators,” Science 361, 6402 (2018).
[Crossref]

2017 (3)

R. A. McCracken, J. M. Charsley, and D. T. Reid, “Decade of astrocombs: recent advances in frequency combs for astronomy,” Optics Express 25, 15058 (2017).
[Crossref]

R. A. McCracken, É. Depagne, R. B. Kuhn, N. Erasmus, L. A. Crause, and D. T. Reid, “Wavelength calibration of a high resolution spectrograph with a partially stabilized 15-GHz astrocomb from 550 to 890 nm,” Optics Express 25, 6450 (2017).
[Crossref] [PubMed]

K. Beha, D. C. Cole, P. Del’Haye, A. Coillet, S. A. Diddams, and S. B. Papp, “Electronic synthesis of light,” Optica 4, 406–411 (2017).
[Crossref]

2016 (5)

K. Kashiwagi, T. Kurokawa, Y. Okuyama, T. Mori, Y. Tanaka, Y. Yamamoto, and M. Hirano, “Direct generation of 12.5-GHz-spaced optical frequency comb with ultrabroad coverage in near-infrared region by cascaded fiber configuration,” Optics Express 24, 8120 (2016).
[Crossref] [PubMed]

V. Bonvin, M. Tewes, F. Courbin, T. Kuntzer, D. Sluse, and G. Meylan, “COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XV. Assessing the achievability and precision of time-delay measurements,” Astronomy & Astrophysics 585, A88 (2016).
[Crossref]

A. Brucalassi, F. Grupp, H. Kellermann, L. Wang, F. Lang-Bardl, N. Baisert, S. M. Hu, U. Hopp, and R. Bender, “Stability of the FOCES spectrograph using an astro-frequency comb as calibrator,” SPIE Proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99085W (2016).
[Crossref]

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

X. Yi, K. Vahala, J. Li, S. Diddams, G. Ycas, P. Plavchan, S. Leifer, J. Sandhu, G. Vasisht, P. Chen, P. Gao, J. Gagne, E. Furlan, M. Bottom, E. C. Martin, M. P. Fitzgerald, G. Doppmann, and C. Beichman, “Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy,” Nature Communications 7, 10436 (2016).
[Crossref] [PubMed]

2015 (5)

Lei Hou, Hai-Nian Han, Wei Wang, Long Zhang, Li-Hui Pang, De-Hua Li, and Zhi-Yi Wei. , “A 23.75-GHz frequency comb with two low-finesse filtering cavities in series for high resolution spectroscopy,” Chinese Physics B 24(2), 024213 (2015).
[Crossref]

F. F. Bauer, M. Zechmeister, and A. Reiners, “Calibrating echelle spectrographs with Fabry-Pérot etalons,” Astronomy & Astrophysics 581, A117 (2015).
[Crossref]

A. Wyttenbach, D. Ehrenreich, C. Lovis, S. Udry, and F. Pepe, “Spectrally resolved detection of sodium in the atmosphere of HD189733b with the HARPS spectrograph,” Astronomy & Astrophysics 577, A62 (2015).
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J. H. C. Martins, N. C. Santos, P. Figueira, J. P. Faria, M. Montalto, I. Boisse, D. Ehrenreich, C. Lovis, M. Mayor, C. Melo, F. Pepe, S. G. Sousa, S. Udry, and D. Cunha, “Evidence for a spectroscopic direct detection of reflected light from 51 Pegasi b,” Astronomy & Astrophysics 576, A134 (2015).
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A. G. Glenday, C.-H. Li, N. Langellier, G. Chang, L.-J. Chen, G. Furesz, A. A. Zibrov, F. Kärtner, D. F. Phillips, D. Sasselov, A. Szentgyorgyi, and R. L. Walsworth, “Operation of a broadband visible-wavelength astro-comb with a high-resolution astrophysical spectrograph,” Optica 2(3), 250–254 (2015).
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2014 (2)

J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” Astron. Astrophys. 564, A46 (2014).
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R. A. Probst, G. Lo Curto, G. Avila, B. L. Canto Martins, J. R. de Medeiros, M. Esposito, J. I. González Hernández, T. W. Hänsch, R. Holzwarth, F. Kerber, I. C. Leão, A. Manescau, L. Pasquini, R. Rebolo-López, T. Steinmetz, T. Udem, and Y. Wu, “A laser frequency comb featuring sub-cm/s precision for routine operation on HARPS,” In SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy V 9147, 91471C (2014).

2013 (5)

R. A. Probst, T. Steinmetz, T. Wilken, H. Hundertmark, S. P. Stark, G. K. L. Wong, P. S. J. Russell, T. W. Hänsch, R. Holzwarth, and T. Udem, “Nonlinear amplification of side-modes in frequency combs,” Optics Express 21, 11670 (2013).
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M. Tewes, F. Courbin, and G. Meylan, “COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XI. Techniques for time delay measurement in presence of microlensing,” Astronomy & Astrophysics 553, A120 (2013).
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F. Bouchy, R. F. Díaz, G. Hébrard, L. Arnold, I. Boisse, X. Delfosse, S. Perruchot, and A. Santerne, “SOPHIE+: First results of an octagonal-section fiber for high-precision radial velocity measurements,” Astronomy & Astrophysics 549, A49 (2013).
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A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, A. Takada, T. Sogawa, and M. Koga, “Phase-noise characteristics of a 25-GHz-spaced optical frequency comb based on a phase- and intensity-modulated laser,” Optics Express 21, 29186 (2013).
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V. Torres-Company and A.M. Weiner, “Optical frequency comb technology for ultra-broadband radio-frequency photonics,” Laser & Photonics Reviews 8(3), 368–393 (2013).
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2012 (6)

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
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G. Chang, C.-H. Li, D. F. Phillips, A. Szentgyorgyi, R. L. Walsworth, and F. X. Kärtner, “Optimization of filtering schemes for broadband astro-combs,” Optics Express 20, 24987 (2012).
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T. Wilken, G. L. Curto, R. A. Probst, T. Steinmetz, A. Manescau, L. Pasquini, J. I. González Hernández, R. Rebolo, T. W. Hänsch, T. Udem, and R. Holzwarth, “A spectrograph for exoplanet observations calibrated at the centimetre-per-second level,” Nature 485, 611–614 (2012).
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F. Wildi, B. Chazelas, and F. Pepe, “A passive cost-effective solution for the high accuracy wavelength calibration of radial velocity spectrographs,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84468E (2012).
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G. G. Ycas, F. Quinlan, S. A. Diddams, S. Osterman, S. Mahadevan, S. Redman, R. Terrien, L. Ramsey, C. F. Bender, B. Botzer, and S. Sigurdsson, “Demonstration of on-sky calibration of astronomical spectra using a 25 GHz near-IR laser frequency comb,” Optics Express 20, 6631 (2012).
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H.-P. Doerr, T. Steinmetz, R. Holzwarth, T. Kentischer, and W. Schmidt, “A laser frequency comb system for absolute calibration of the VTT echelle spectrograph,” Solar Physics 280, 663–670 (2012).
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2011 (5)

J.-P. Uzan, “Varying constants, gravitation and cosmology,” Living Reviews in Relativity 14, 2 (2011).
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G. Schettino, E. Oliva, M. Inguscio, C. Baffa, E. Giani, A. Tozzi, and P. C. Pastor, “Optical Frequency Comb as a general-purpose and wide-band calibration source for astronomical high resolution infrared spectrographs,” Experimental Astronomy 31, 69–81 (2011).
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T. J. Kippenberg, R. Holzwarth, and S. A. Diddams, “Microresonator-based optical frequency combs,” Science 332, 555 (2011).
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A. W. Howard, J. A. Johnson, G. W. Marcy, D. A. Fischer, J. T. Wright, G. W. Henry, H. Isaacson, J. A. Valenti, J. Anderson, and N. E. Piskunov, “The NASA-UC Eta-Earth Program. II. A planet orbiting HD 156668 with a minimum mass of four earth masses,” Astrophys. J. 726, 73 (2011).
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A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, H. Nakano, T. Sogawa, A. Takada, and M. Koga, “Generation of 120-fs laser pulses at 1-GHz repetition rate derived from continuous wave laser diode,” Optics Express 19, 22402 (2011).
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2010 (2)

F. Quinlan, G. Ycas, S. Osterman, and S. A. Diddams, “A 12.5 GHz-spaced optical frequency comb spanning 400 nm for near-infrared astronomical spectrograph calibration,” Review of Scientific Instruments 81(6), 063105 (2010).
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G. Chang, C.-H. Li, D. F. Phillips, R. L. Walsworth, and F. X. Kärtner, “Toward a broadband astro-comb: effects of nonlinear spectral broadening in optical fibers,” Optics Express 18, 12736 (2010).
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2008 (4)

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
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T. Steinmetz, T. Wilken, C. Araujo-Hauck, R. Holzwarth, T. W. Hänsch, L. Pasquini, A. Manescau, S. D’Odorico, M. T. Murphy, T. Kentischer, W. Schmidt, and T. Udem, “Laser frequency combs for astronomical observations,” Science 321, 1335 (2008).
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C.-H. Li, A. J. Benedick, P. Fendel, A. G. Glenday, F. X. Kärtner, D. F. Phillips, D. Sasselov, A. Szentgyorgyi, and R. L. Walsworth, “A laser frequency comb that enables radial velocity measurements with a precision of 1cms−1,” Nature 452, 610–612 (2008).
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I. Morohashi, T. Sakamoto, H. Sotobayashi, T. Kawanishi, I. Hosako, and M. Tsuchiya, “Widely repetition-tunable 200 fs pulse source using a Mach Zehnder-modulator-based flat comb generator and dispersion-flattened dispersion-decreasing fiber,” Optics Letters 33, 1192 (2008).
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2007 (2)

M. T. Murphy, T. Udem, R. Holzwarth, A. Sizmann, L. Pasquini, C. Araujo-Hauck, H. Dekker, S. D’Odorico, M. Fischer, T. W. Hänsch, and A. Manescau, “High-precision wavelength calibration of astronomical spectrographs with laser frequency combs,” Monthly Notices Of The Royal Astronomical Society 380, 839–847 (2007).
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P. Del’Haye, A. Schliesser, O. Arcizet, T. Wilken, R. Holzwarth, and T. J. Kippenberg, “Optical frequency comb generation from a monolithic microresonator,” Nature 450, 1214–1217 (2007).
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2004 (2)

N. Molinari, J. F. Durand, and R. Sabatier, “Bounded optimal knots for regression splines,” Computational Statistics & Data Analysis 45(2), 159–178 (2004).
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F. Bouchy, C. Lovis, M. Mayor, F. Pepe, D. Queloz, S. Udry, C. Melo, and N. Santos, “New results on Doppler follow-up of planetary companions detected by OGLE,” In Extrasolar Planets: Today and Tomorrow, Astronomical Society of the Pacific Conference Proceedings 321, 15 (2004).

2003 (1)

S. T. Cundiff and J. Ye, “Colloquium: Femtosecond optical frequency combs,” Rev. Mod. Phys. 75, 325–342 (2003).
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2002 (2)

D. Charbonneau, T. M. Brown, R. W. Noyes, and R. L. Gilliland, “Detection of an extrasolar planet atmosphere,” Astrophys. J. 568, 377–384 (2002).
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T. Udem, R. Holzwarth, and T. W. Hänsch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
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2001 (2)

F. Bouchy, F. Pepe, and D. Queloz, “Fundamental photon noise limit to radial velocity measurements,” Astronomy & Astrophysics 374, 733–739 (2001).
[Crossref]

J. Baudrand and G. A. H. Walker, “Modal noise in high-resolution, fiber-fed spectra: a study and simple cure,” Publications of the Astronomical Society of the Pacific 113, 851–858 (2001).
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2000 (2)

H. Murata, A. Morimoto, T. Kobayashi, and S. Yamamoto, “Optical pulse generation by electrooptic-modulation method and its application to integrated ultrashort pulse generators,” IEEE Journal of Selected Topics in Quantum Electronics 6, 1325–1331 (2000).
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D. J. Jones, S. A. Diddams, J. K. Ranka, A. Stentz, R. S. Windeler, J. L. Hall, and S. T. Cundiff, “Carrier-envelope phase control of femtosecond mode-locked lasers and direct optical frequency synthesis,” Science,  288, 635–640 (2000).
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1999 (1)

H. R. Telle, G. Steinmeyer, A. E. Dunlop, J. Stenger, D. H. Sutter, and U. Keller, “Carrier-envelope offset phase control: A novel concept for absolute optical frequency measurement and ultrashort pulse generation,” Applied Physics B: Lasers and Optics 69, 327–332 (1999).
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1995 (1)

M. Mayor and D. Queloz, “A Jupiter-mass companion to a solar-type star,” Nature 378, 355–359 (1995).
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1988 (1)

T. Kobayashi, H. Yao, K. Amano, Y. Fukushima, and A. Morimoto, “Optical pulse compression using high-frequency electrooptic phase modulation,” IEEE Journal of Quantum Electronics 24, 382–387 (1988).
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Aghazarian, H.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Amano, K.

T. Kobayashi, H. Yao, K. Amano, Y. Fukushima, and A. Morimoto, “Optical pulse compression using high-frequency electrooptic phase modulation,” IEEE Journal of Quantum Electronics 24, 382–387 (1988).
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Anderson, J.

A. W. Howard, J. A. Johnson, G. W. Marcy, D. A. Fischer, J. T. Wright, G. W. Henry, H. Isaacson, J. A. Valenti, J. Anderson, and N. E. Piskunov, “The NASA-UC Eta-Earth Program. II. A planet orbiting HD 156668 with a minimum mass of four earth masses,” Astrophys. J. 726, 73 (2011).
[Crossref]

Anderson, M. H.

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Araujo-Hauck, C.

T. Steinmetz, T. Wilken, C. Araujo-Hauck, R. Holzwarth, T. W. Hänsch, L. Pasquini, A. Manescau, S. D’Odorico, M. T. Murphy, T. Kentischer, W. Schmidt, and T. Udem, “Laser frequency combs for astronomical observations,” Science 321, 1335 (2008).
[Crossref] [PubMed]

M. T. Murphy, T. Udem, R. Holzwarth, A. Sizmann, L. Pasquini, C. Araujo-Hauck, H. Dekker, S. D’Odorico, M. Fischer, T. W. Hänsch, and A. Manescau, “High-precision wavelength calibration of astronomical spectrographs with laser frequency combs,” Monthly Notices Of The Royal Astronomical Society 380, 839–847 (2007).
[Crossref]

Arcizet, O.

P. Del’Haye, A. Schliesser, O. Arcizet, T. Wilken, R. Holzwarth, and T. J. Kippenberg, “Optical frequency comb generation from a monolithic microresonator,” Nature 450, 1214–1217 (2007).
[Crossref]

Arnold, L.

F. Bouchy, R. F. Díaz, G. Hébrard, L. Arnold, I. Boisse, X. Delfosse, S. Perruchot, and A. Santerne, “SOPHIE+: First results of an octagonal-section fiber for high-precision radial velocity measurements,” Astronomy & Astrophysics 549, A49 (2013).
[Crossref]

Arnouts, S.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Avila, G.

R. A. Probst, G. Lo Curto, G. Avila, B. L. Canto Martins, J. R. de Medeiros, M. Esposito, J. I. González Hernández, T. W. Hänsch, R. Holzwarth, F. Kerber, I. C. Leão, A. Manescau, L. Pasquini, R. Rebolo-López, T. Steinmetz, T. Udem, and Y. Wu, “A laser frequency comb featuring sub-cm/s precision for routine operation on HARPS,” In SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy V 9147, 91471C (2014).

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
[Crossref]

Baffa, C.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
[Crossref]

G. Schettino, E. Oliva, M. Inguscio, C. Baffa, E. Giani, A. Tozzi, and P. C. Pastor, “Optical Frequency Comb as a general-purpose and wide-band calibration source for astronomical high resolution infrared spectrographs,” Experimental Astronomy 31, 69–81 (2011).
[Crossref]

Baisert, N.

A. Brucalassi, F. Grupp, H. Kellermann, L. Wang, F. Lang-Bardl, N. Baisert, S. M. Hu, U. Hopp, and R. Bender, “Stability of the FOCES spectrograph using an astro-frequency comb as calibrator,” SPIE Proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99085W (2016).
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Barban, G.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Barkhouser, R. H.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Baudrand, J.

J. Baudrand and G. A. H. Walker, “Modal noise in high-resolution, fiber-fed spectra: a study and simple cure,” Publications of the Astronomical Society of the Pacific 113, 851–858 (2001).
[Crossref]

Bauer, F. F.

F. F. Bauer, M. Zechmeister, and A. Reiners, “Calibrating echelle spectrographs with Fabry-Pérot etalons,” Astronomy & Astrophysics 581, A117 (2015).
[Crossref]

Beha, K.

Beichman, C.

X. Yi, K. Vahala, J. Li, S. Diddams, G. Ycas, P. Plavchan, S. Leifer, J. Sandhu, G. Vasisht, P. Chen, P. Gao, J. Gagne, E. Furlan, M. Bottom, E. C. Martin, M. P. Fitzgerald, G. Doppmann, and C. Beichman, “Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy,” Nature Communications 7, 10436 (2016).
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M.-G. Suh, X. Yi, Y.-H. Lai, S. Leifer, I. S. Grudinin, G. Vasisht, E. C. Martin, M. P. Fitzgerald, G. Doppmann, J. Wang, D. Mawet, S. B. Papp, S. A. Diddams, C. Beichman, and K. Vahala, “Searching for exoplanets using a microresonator astrocomb,” ArXiv e-prints (2018).

Benatti, S.

R. Claudi, S. Benatti, I. Carleo, A. Ghedina, G. Micela, E. Molinari, E. Oliva, A. Tozzi, and Giarps Team, “GIARPS: the VIS-NIR high precision radial velocity facility TNG,” In Frontier Research in Astrophysics II, FRAPWS2016070 (2016).

Bender, C.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Bender, C. F.

G. G. Ycas, F. Quinlan, S. A. Diddams, S. Osterman, S. Mahadevan, S. Redman, R. Terrien, L. Ramsey, C. F. Bender, B. Botzer, and S. Sigurdsson, “Demonstration of on-sky calibration of astronomical spectra using a 25 GHz near-IR laser frequency comb,” Optics Express 20, 6631 (2012).
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Bender, R.

A. Brucalassi, F. Grupp, H. Kellermann, L. Wang, F. Lang-Bardl, N. Baisert, S. M. Hu, U. Hopp, and R. Bender, “Stability of the FOCES spectrograph using an astro-frequency comb as calibrator,” SPIE Proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99085W (2016).
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Benedick, A. J.

C.-H. Li, A. J. Benedick, P. Fendel, A. G. Glenday, F. X. Kärtner, D. F. Phillips, D. Sasselov, A. Szentgyorgyi, and R. L. Walsworth, “A laser frequency comb that enables radial velocity measurements with a precision of 1cms−1,” Nature 452, 610–612 (2008).
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Bertaux, J. L.

J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” Astron. Astrophys. 564, A46 (2014).
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J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” In ASA/HITRAN conference, (2012).

Biliotti, V.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
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Blakeslee, S.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Bodichon, R.

J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” Astron. Astrophys. 564, A46 (2014).
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J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” In ASA/HITRAN conference, (2012).

Boisse, I.

J. H. C. Martins, N. C. Santos, P. Figueira, J. P. Faria, M. Montalto, I. Boisse, D. Ehrenreich, C. Lovis, M. Mayor, C. Melo, F. Pepe, S. G. Sousa, S. Udry, and D. Cunha, “Evidence for a spectroscopic direct detection of reflected light from 51 Pegasi b,” Astronomy & Astrophysics 576, A134 (2015).
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F. Bouchy, R. F. Díaz, G. Hébrard, L. Arnold, I. Boisse, X. Delfosse, S. Perruchot, and A. Santerne, “SOPHIE+: First results of an octagonal-section fiber for high-precision radial velocity measurements,” Astronomy & Astrophysics 549, A49 (2013).
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Bonifacio, P.

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
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Bonvin, V.

V. Bonvin, M. Tewes, F. Courbin, T. Kuntzer, D. Sluse, and G. Meylan, “COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XV. Assessing the achievability and precision of time-delay measurements,” Astronomy & Astrophysics 585, A88 (2016).
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Boonne, C.

J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” Astron. Astrophys. 564, A46 (2014).
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J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” In ASA/HITRAN conference, (2012).

Borges, R. C.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Bottom, M.

X. Yi, K. Vahala, J. Li, S. Diddams, G. Ycas, P. Plavchan, S. Leifer, J. Sandhu, G. Vasisht, P. Chen, P. Gao, J. Gagne, E. Furlan, M. Bottom, E. C. Martin, M. P. Fitzgerald, G. Doppmann, and C. Beichman, “Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy,” Nature Communications 7, 10436 (2016).
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Botzer, B.

G. G. Ycas, F. Quinlan, S. A. Diddams, S. Osterman, S. Mahadevan, S. Redman, R. Terrien, L. Ramsey, C. F. Bender, B. Botzer, and S. Sigurdsson, “Demonstration of on-sky calibration of astronomical spectra using a 25 GHz near-IR laser frequency comb,” Optics Express 20, 6631 (2012).
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Bouchy, F.

F. Bouchy, R. F. Díaz, G. Hébrard, L. Arnold, I. Boisse, X. Delfosse, S. Perruchot, and A. Santerne, “SOPHIE+: First results of an octagonal-section fiber for high-precision radial velocity measurements,” Astronomy & Astrophysics 549, A49 (2013).
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J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
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F. Bouchy, C. Lovis, M. Mayor, F. Pepe, D. Queloz, S. Udry, C. Melo, and N. Santos, “New results on Doppler follow-up of planetary companions detected by OGLE,” In Extrasolar Planets: Today and Tomorrow, Astronomical Society of the Pacific Conference Proceedings 321, 15 (2004).

F. Bouchy, F. Pepe, and D. Queloz, “Fundamental photon noise limit to radial velocity measurements,” Astronomy & Astrophysics 374, 733–739 (2001).
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E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Brand, W.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Braun, D. F.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Brown, T. M.

D. Charbonneau, T. M. Brown, R. W. Noyes, and R. L. Gilliland, “Detection of an extrasolar planet atmosphere,” Astrophys. J. 568, 377–384 (2002).
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Brucalassi, A.

A. Brucalassi, F. Grupp, H. Kellermann, L. Wang, F. Lang-Bardl, N. Baisert, S. M. Hu, U. Hopp, and R. Bender, “Stability of the FOCES spectrograph using an astro-frequency comb as calibrator,” SPIE Proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99085W (2016).
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Bruno, P.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
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Canto Martins, B. L.

R. A. Probst, G. Lo Curto, G. Avila, B. L. Canto Martins, J. R. de Medeiros, M. Esposito, J. I. González Hernández, T. W. Hänsch, R. Holzwarth, F. Kerber, I. C. Leão, A. Manescau, L. Pasquini, R. Rebolo-López, T. Steinmetz, T. Udem, and Y. Wu, “A laser frequency comb featuring sub-cm/s precision for routine operation on HARPS,” In SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy V 9147, 91471C (2014).

Carleo, I.

R. Claudi, S. Benatti, I. Carleo, A. Ghedina, G. Micela, E. Molinari, E. Oliva, A. Tozzi, and Giarps Team, “GIARPS: the VIS-NIR high precision radial velocity facility TNG,” In Frontier Research in Astrophysics II, FRAPWS2016070 (2016).

Carlson, D.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Carr, M. A.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Cecconi, M.

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Chabaud, P.-Y.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Chang, G.

A. G. Glenday, C.-H. Li, N. Langellier, G. Chang, L.-J. Chen, G. Furesz, A. A. Zibrov, F. Kärtner, D. F. Phillips, D. Sasselov, A. Szentgyorgyi, and R. L. Walsworth, “Operation of a broadband visible-wavelength astro-comb with a high-resolution astrophysical spectrograph,” Optica 2(3), 250–254 (2015).
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G. Chang, C.-H. Li, D. F. Phillips, A. Szentgyorgyi, R. L. Walsworth, and F. X. Kärtner, “Optimization of filtering schemes for broadband astro-combs,” Optics Express 20, 24987 (2012).
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G. Chang, C.-H. Li, D. F. Phillips, R. L. Walsworth, and F. X. Kärtner, “Toward a broadband astro-comb: effects of nonlinear spectral broadening in optical fibers,” Optics Express 18, 12736 (2010).
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Chang, Y.-C.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Charbonneau, D.

D. Charbonneau, T. M. Brown, R. W. Noyes, and R. L. Gilliland, “Detection of an extrasolar planet atmosphere,” Astrophys. J. 568, 377–384 (2002).
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Charsley, J. M.

R. A. McCracken, J. M. Charsley, and D. T. Reid, “Decade of astrocombs: recent advances in frequency combs for astronomy,” Optics Express 25, 15058 (2017).
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Chazelas, B.

F. Wildi, B. Chazelas, and F. Pepe, “A passive cost-effective solution for the high accuracy wavelength calibration of radial velocity spectrographs,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84468E (2012).
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T. Wilken, G. L. Curto, R. A. Probst, T. Steinmetz, A. Manescau, L. Pasquini, J. I. González Hernández, R. Rebolo, T. W. Hänsch, T. Udem, and R. Holzwarth, “A spectrograph for exoplanet observations calibrated at the centimetre-per-second level,” Nature 485, 611–614 (2012).
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T. Steinmetz, T. Wilken, C. Araujo-Hauck, R. Holzwarth, T. W. Hänsch, L. Pasquini, A. Manescau, S. D’Odorico, M. T. Murphy, T. Kentischer, W. Schmidt, and T. Udem, “Laser frequency combs for astronomical observations,” Science 321, 1335 (2008).
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M. T. Murphy, T. Udem, R. Holzwarth, A. Sizmann, L. Pasquini, C. Araujo-Hauck, H. Dekker, S. D’Odorico, M. Fischer, T. W. Hänsch, and A. Manescau, “High-precision wavelength calibration of astronomical spectrographs with laser frequency combs,” Monthly Notices Of The Royal Astronomical Society 380, 839–847 (2007).
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T. Udem, R. Holzwarth, and T. W. Hänsch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
[Crossref] [PubMed]

Harding, A.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Hart, M.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Harutyunyan, A.

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Hearty, F.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Hébrard, G.

F. Bouchy, R. F. Díaz, G. Hébrard, L. Arnold, I. Boisse, X. Delfosse, S. Perruchot, and A. Santerne, “SOPHIE+: First results of an octagonal-section fiber for high-precision radial velocity measurements,” Astronomy & Astrophysics 549, A49 (2013).
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Heckman, T. M.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Henry, G. W.

A. W. Howard, J. A. Johnson, G. W. Marcy, D. A. Fischer, J. T. Wright, G. W. Henry, H. Isaacson, J. A. Valenti, J. Anderson, and N. E. Piskunov, “The NASA-UC Eta-Earth Program. II. A planet orbiting HD 156668 with a minimum mass of four earth masses,” Astrophys. J. 726, 73 (2011).
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Herr, T.

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Hickstein, D.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Hirano, M.

K. Kashiwagi, T. Kurokawa, Y. Okuyama, T. Mori, Y. Tanaka, Y. Yamamoto, and M. Hirano, “Direct generation of 12.5-GHz-spaced optical frequency comb with ultrabroad coverage in near-infrared region by cascaded fiber configuration,” Optics Express 24, 8120 (2016).
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Hirata, C. M.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Ho, P.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Holzwarth, R.

R. A. Probst, G. Lo Curto, G. Avila, B. L. Canto Martins, J. R. de Medeiros, M. Esposito, J. I. González Hernández, T. W. Hänsch, R. Holzwarth, F. Kerber, I. C. Leão, A. Manescau, L. Pasquini, R. Rebolo-López, T. Steinmetz, T. Udem, and Y. Wu, “A laser frequency comb featuring sub-cm/s precision for routine operation on HARPS,” In SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy V 9147, 91471C (2014).

R. A. Probst, T. Steinmetz, T. Wilken, H. Hundertmark, S. P. Stark, G. K. L. Wong, P. S. J. Russell, T. W. Hänsch, R. Holzwarth, and T. Udem, “Nonlinear amplification of side-modes in frequency combs,” Optics Express 21, 11670 (2013).
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H.-P. Doerr, T. Steinmetz, R. Holzwarth, T. Kentischer, and W. Schmidt, “A laser frequency comb system for absolute calibration of the VTT echelle spectrograph,” Solar Physics 280, 663–670 (2012).
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T. Wilken, G. L. Curto, R. A. Probst, T. Steinmetz, A. Manescau, L. Pasquini, J. I. González Hernández, R. Rebolo, T. W. Hänsch, T. Udem, and R. Holzwarth, “A spectrograph for exoplanet observations calibrated at the centimetre-per-second level,” Nature 485, 611–614 (2012).
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T. J. Kippenberg, R. Holzwarth, and S. A. Diddams, “Microresonator-based optical frequency combs,” Science 332, 555 (2011).
[Crossref] [PubMed]

T. Steinmetz, T. Wilken, C. Araujo-Hauck, R. Holzwarth, T. W. Hänsch, L. Pasquini, A. Manescau, S. D’Odorico, M. T. Murphy, T. Kentischer, W. Schmidt, and T. Udem, “Laser frequency combs for astronomical observations,” Science 321, 1335 (2008).
[Crossref] [PubMed]

M. T. Murphy, T. Udem, R. Holzwarth, A. Sizmann, L. Pasquini, C. Araujo-Hauck, H. Dekker, S. D’Odorico, M. Fischer, T. W. Hänsch, and A. Manescau, “High-precision wavelength calibration of astronomical spectrographs with laser frequency combs,” Monthly Notices Of The Royal Astronomical Society 380, 839–847 (2007).
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P. Del’Haye, A. Schliesser, O. Arcizet, T. Wilken, R. Holzwarth, and T. J. Kippenberg, “Optical frequency comb generation from a monolithic microresonator,” Nature 450, 1214–1217 (2007).
[Crossref]

T. Udem, R. Holzwarth, and T. W. Hänsch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
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Hope, S. C.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Hopp, U.

A. Brucalassi, F. Grupp, H. Kellermann, L. Wang, F. Lang-Bardl, N. Baisert, S. M. Hu, U. Hopp, and R. Bender, “Stability of the FOCES spectrograph using an astro-frequency comb as calibrator,” SPIE Proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99085W (2016).
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Hosako, I.

I. Morohashi, T. Sakamoto, H. Sotobayashi, T. Kawanishi, I. Hosako, and M. Tsuchiya, “Widely repetition-tunable 200 fs pulse source using a Mach Zehnder-modulator-based flat comb generator and dispersion-flattened dispersion-decreasing fiber,” Optics Letters 33, 1192 (2008).
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Hou, Lei

Lei Hou, Hai-Nian Han, Wei Wang, Long Zhang, Li-Hui Pang, De-Hua Li, and Zhi-Yi Wei. , “A 23.75-GHz frequency comb with two low-finesse filtering cavities in series for high resolution spectroscopy,” Chinese Physics B 24(2), 024213 (2015).
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Hovland, L.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Howard, A. W.

A. W. Howard, J. A. Johnson, G. W. Marcy, D. A. Fischer, J. T. Wright, G. W. Henry, H. Isaacson, J. A. Valenti, J. Anderson, and N. E. Piskunov, “The NASA-UC Eta-Earth Program. II. A planet orbiting HD 156668 with a minimum mass of four earth masses,” Astrophys. J. 726, 73 (2011).
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Hsu, S.-F.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Minowa, Y.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Mizutori, A.

A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, A. Takada, T. Sogawa, and M. Koga, “Phase-noise characteristics of a 25-GHz-spaced optical frequency comb based on a phase- and intensity-modulated laser,” Optics Express 21, 29186 (2013).
[Crossref]

A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, H. Nakano, T. Sogawa, A. Takada, and M. Koga, “Generation of 120-fs laser pulses at 1-GHz repetition rate derived from continuous wave laser diode,” Optics Express 19, 22402 (2011).
[Crossref] [PubMed]

Mochi, I.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
[Crossref]

Molaro, P.

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
[Crossref]

Molinari, E.

R. Claudi, S. Benatti, I. Carleo, A. Ghedina, G. Micela, E. Molinari, E. Oliva, A. Tozzi, and Giarps Team, “GIARPS: the VIS-NIR high precision radial velocity facility TNG,” In Frontier Research in Astrophysics II, FRAPWS2016070 (2016).

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Molinari, N.

N. Molinari, J. F. Durand, and R. Sabatier, “Bounded optimal knots for regression splines,” Computational Statistics & Data Analysis 45(2), 159–178 (2004).
[Crossref]

Monson, A.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Montalto, M.

J. H. C. Martins, N. C. Santos, P. Figueira, J. P. Faria, M. Montalto, I. Boisse, D. Ehrenreich, C. Lovis, M. Mayor, C. Melo, F. Pepe, S. G. Sousa, S. Udry, and D. Cunha, “Evidence for a spectroscopic direct detection of reflected light from 51 Pegasi b,” Astronomy & Astrophysics 576, A134 (2015).
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Montegriffo, P.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
[Crossref]

Morantz, C.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Mori, T.

K. Kashiwagi, T. Kurokawa, Y. Okuyama, T. Mori, Y. Tanaka, Y. Yamamoto, and M. Hirano, “Direct generation of 12.5-GHz-spaced optical frequency comb with ultrabroad coverage in near-infrared region by cascaded fiber configuration,” Optics Express 24, 8120 (2016).
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Morimoto, A.

H. Murata, A. Morimoto, T. Kobayashi, and S. Yamamoto, “Optical pulse generation by electrooptic-modulation method and its application to integrated ultrashort pulse generators,” IEEE Journal of Selected Topics in Quantum Electronics 6, 1325–1331 (2000).
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T. Kobayashi, H. Yao, K. Amano, Y. Fukushima, and A. Morimoto, “Optical pulse compression using high-frequency electrooptic phase modulation,” IEEE Journal of Quantum Electronics 24, 382–387 (1988).
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Moritani, Y.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Morohashi, I.

I. Morohashi, T. Sakamoto, H. Sotobayashi, T. Kawanishi, I. Hosako, and M. Tsuchiya, “Widely repetition-tunable 200 fs pulse source using a Mach Zehnder-modulator-based flat comb generator and dispersion-flattened dispersion-decreasing fiber,” Optics Letters 33, 1192 (2008).
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Moscardini, L.

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
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Murata, H.

H. Murata, A. Morimoto, T. Kobayashi, and S. Yamamoto, “Optical pulse generation by electrooptic-modulation method and its application to integrated ultrashort pulse generators,” IEEE Journal of Selected Topics in Quantum Electronics 6, 1325–1331 (2000).
[Crossref]

Murayama, H.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Murphy, M. T.

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
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T. Steinmetz, T. Wilken, C. Araujo-Hauck, R. Holzwarth, T. W. Hänsch, L. Pasquini, A. Manescau, S. D’Odorico, M. T. Murphy, T. Kentischer, W. Schmidt, and T. Udem, “Laser frequency combs for astronomical observations,” Science 321, 1335 (2008).
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M. T. Murphy, T. Udem, R. Holzwarth, A. Sizmann, L. Pasquini, C. Araujo-Hauck, H. Dekker, S. D’Odorico, M. Fischer, T. W. Hänsch, and A. Manescau, “High-precision wavelength calibration of astronomical spectrographs with laser frequency combs,” Monthly Notices Of The Royal Astronomical Society 380, 839–847 (2007).
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Murray, G. J.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Nakano, H.

A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, H. Nakano, T. Sogawa, A. Takada, and M. Koga, “Generation of 120-fs laser pulses at 1-GHz repetition rate derived from continuous wave laser diode,” Optics Express 19, 22402 (2011).
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Ninan, J.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Nishikawa, T.

A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, A. Takada, T. Sogawa, and M. Koga, “Phase-noise characteristics of a 25-GHz-spaced optical frequency comb based on a phase- and intensity-modulated laser,” Optics Express 21, 29186 (2013).
[Crossref]

A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, H. Nakano, T. Sogawa, A. Takada, and M. Koga, “Generation of 120-fs laser pulses at 1-GHz repetition rate derived from continuous wave laser diode,” Optics Express 19, 22402 (2011).
[Crossref] [PubMed]

Nitroy, C.

A. J. Metcalf, C. Bender, S. Blakeslee, W. Brand, D. Carlson, S. A. Diddams, C. Fredrick, S. Halverson, F. Hearty, D. Hickstein, J. Jennings, S. Kanodia, K. Kaplan, E. Lubar, S. Mahadevan, A. Monson, J. Ninan, C. Nitroy, S. Papp, L. Ramsey, P. Robertson, A. Roy, C. Schwab, K. Srinivasan, G. K. Stefansson, and R. Terrien, “Infrared astronomical spectroscopy for radial velocity measurements with 10 cm/s precision,” Conference on Lasers and Electro-Optics, JTh5A.1 (2018).

Noyes, R. W.

D. Charbonneau, T. M. Brown, R. W. Noyes, and R. L. Gilliland, “Detection of an extrasolar planet atmosphere,” Astrophys. J. 568, 377–384 (2002).
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Obrzud, E.

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

Ohyama, Y.

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
[Crossref]

Okuyama, Y.

K. Kashiwagi, T. Kurokawa, Y. Okuyama, T. Mori, Y. Tanaka, Y. Yamamoto, and M. Hirano, “Direct generation of 12.5-GHz-spaced optical frequency comb with ultrabroad coverage in near-infrared region by cascaded fiber configuration,” Optics Express 24, 8120 (2016).
[Crossref] [PubMed]

Oliva, E.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
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G. Schettino, E. Oliva, M. Inguscio, C. Baffa, E. Giani, A. Tozzi, and P. C. Pastor, “Optical Frequency Comb as a general-purpose and wide-band calibration source for astronomical high resolution infrared spectrographs,” Experimental Astronomy 31, 69–81 (2011).
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R. Claudi, S. Benatti, I. Carleo, A. Ghedina, G. Micela, E. Molinari, E. Oliva, A. Tozzi, and Giarps Team, “GIARPS: the VIS-NIR high precision radial velocity facility TNG,” In Frontier Research in Astrophysics II, FRAPWS2016070 (2016).

Origlia, L.

E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
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N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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Yao, H.

T. Kobayashi, H. Yao, K. Amano, Y. Fukushima, and A. Morimoto, “Optical pulse compression using high-frequency electrooptic phase modulation,” IEEE Journal of Quantum Electronics 24, 382–387 (1988).
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N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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X. Yi, K. Vahala, J. Li, S. Diddams, G. Ycas, P. Plavchan, S. Leifer, J. Sandhu, G. Vasisht, P. Chen, P. Gao, J. Gagne, E. Furlan, M. Bottom, E. C. Martin, M. P. Fitzgerald, G. Doppmann, and C. Beichman, “Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy,” Nature Communications 7, 10436 (2016).
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F. Quinlan, G. Ycas, S. Osterman, and S. A. Diddams, “A 12.5 GHz-spaced optical frequency comb spanning 400 nm for near-infrared astronomical spectrograph calibration,” Review of Scientific Instruments 81(6), 063105 (2010).
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G. G. Ycas, F. Quinlan, S. A. Diddams, S. Osterman, S. Mahadevan, S. Redman, R. Terrien, L. Ramsey, C. F. Bender, B. Botzer, and S. Sigurdsson, “Demonstration of on-sky calibration of astronomical spectra using a 25 GHz near-IR laser frequency comb,” Optics Express 20, 6631 (2012).
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Ye, J.

S. T. Cundiff and J. Ye, “Colloquium: Femtosecond optical frequency combs,” Rev. Mod. Phys. 75, 325–342 (2003).
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X. Yi, K. Vahala, J. Li, S. Diddams, G. Ycas, P. Plavchan, S. Leifer, J. Sandhu, G. Vasisht, P. Chen, P. Gao, J. Gagne, E. Furlan, M. Bottom, E. C. Martin, M. P. Fitzgerald, G. Doppmann, and C. Beichman, “Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy,” Nature Communications 7, 10436 (2016).
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M.-G. Suh, X. Yi, Y.-H. Lai, S. Leifer, I. S. Grudinin, G. Vasisht, E. C. Martin, M. P. Fitzgerald, G. Doppmann, J. Wang, D. Mawet, S. B. Papp, S. A. Diddams, C. Beichman, and K. Vahala, “Searching for exoplanets using a microresonator astrocomb,” ArXiv e-prints (2018).

Zechmeister, M.

F. F. Bauer, M. Zechmeister, and A. Reiners, “Calibrating echelle spectrographs with Fabry-Pérot etalons,” Astronomy & Astrophysics 581, A117 (2015).
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Zhang, Long

Lei Hou, Hai-Nian Han, Wei Wang, Long Zhang, Li-Hui Pang, De-Hua Li, and Zhi-Yi Wei. , “A 23.75-GHz frequency comb with two low-finesse filtering cavities in series for high resolution spectroscopy,” Chinese Physics B 24(2), 024213 (2015).
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Applied Physics B: Lasers and Optics (1)

H. R. Telle, G. Steinmeyer, A. E. Dunlop, J. Stenger, D. H. Sutter, and U. Keller, “Carrier-envelope offset phase control: A novel concept for absolute optical frequency measurement and ultrashort pulse generation,” Applied Physics B: Lasers and Optics 69, 327–332 (1999).
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Astron. Astrophys. (1)

J. L. Bertaux, R. Lallement, S. Ferron, C. Boonne, and R. Bodichon, “TAPAS, a web-based service of atmospheric transmission computation for astronomy,” Astron. Astrophys. 564, A46 (2014).
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Astronomy & Astrophysics (7)

F. Bouchy, F. Pepe, and D. Queloz, “Fundamental photon noise limit to radial velocity measurements,” Astronomy & Astrophysics 374, 733–739 (2001).
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M. Tewes, F. Courbin, and G. Meylan, “COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XI. Techniques for time delay measurement in presence of microlensing,” Astronomy & Astrophysics 553, A120 (2013).
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V. Bonvin, M. Tewes, F. Courbin, T. Kuntzer, D. Sluse, and G. Meylan, “COSMOGRAIL: the COSmological MOnitoring of GRAvItational Lenses. XV. Assessing the achievability and precision of time-delay measurements,” Astronomy & Astrophysics 585, A88 (2016).
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F. Bouchy, R. F. Díaz, G. Hébrard, L. Arnold, I. Boisse, X. Delfosse, S. Perruchot, and A. Santerne, “SOPHIE+: First results of an octagonal-section fiber for high-precision radial velocity measurements,” Astronomy & Astrophysics 549, A49 (2013).
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F. F. Bauer, M. Zechmeister, and A. Reiners, “Calibrating echelle spectrographs with Fabry-Pérot etalons,” Astronomy & Astrophysics 581, A117 (2015).
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A. Wyttenbach, D. Ehrenreich, C. Lovis, S. Udry, and F. Pepe, “Spectrally resolved detection of sodium in the atmosphere of HD189733b with the HARPS spectrograph,” Astronomy & Astrophysics 577, A62 (2015).
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J. H. C. Martins, N. C. Santos, P. Figueira, J. P. Faria, M. Montalto, I. Boisse, D. Ehrenreich, C. Lovis, M. Mayor, C. Melo, F. Pepe, S. G. Sousa, S. Udry, and D. Cunha, “Evidence for a spectroscopic direct detection of reflected light from 51 Pegasi b,” Astronomy & Astrophysics 576, A134 (2015).
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Astrophys. J. (2)

D. Charbonneau, T. M. Brown, R. W. Noyes, and R. L. Gilliland, “Detection of an extrasolar planet atmosphere,” Astrophys. J. 568, 377–384 (2002).
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A. W. Howard, J. A. Johnson, G. W. Marcy, D. A. Fischer, J. T. Wright, G. W. Henry, H. Isaacson, J. A. Valenti, J. Anderson, and N. E. Piskunov, “The NASA-UC Eta-Earth Program. II. A planet orbiting HD 156668 with a minimum mass of four earth masses,” Astrophys. J. 726, 73 (2011).
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Chinese Physics B (1)

Lei Hou, Hai-Nian Han, Wei Wang, Long Zhang, Li-Hui Pang, De-Hua Li, and Zhi-Yi Wei. , “A 23.75-GHz frequency comb with two low-finesse filtering cavities in series for high resolution spectroscopy,” Chinese Physics B 24(2), 024213 (2015).
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Computational Statistics & Data Analysis (1)

N. Molinari, J. F. Durand, and R. Sabatier, “Bounded optimal knots for regression splines,” Computational Statistics & Data Analysis 45(2), 159–178 (2004).
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Experimental Astronomy (1)

G. Schettino, E. Oliva, M. Inguscio, C. Baffa, E. Giani, A. Tozzi, and P. C. Pastor, “Optical Frequency Comb as a general-purpose and wide-band calibration source for astronomical high resolution infrared spectrographs,” Experimental Astronomy 31, 69–81 (2011).
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IEEE Journal of Quantum Electronics (1)

T. Kobayashi, H. Yao, K. Amano, Y. Fukushima, and A. Morimoto, “Optical pulse compression using high-frequency electrooptic phase modulation,” IEEE Journal of Quantum Electronics 24, 382–387 (1988).
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IEEE Journal of Selected Topics in Quantum Electronics (1)

H. Murata, A. Morimoto, T. Kobayashi, and S. Yamamoto, “Optical pulse generation by electrooptic-modulation method and its application to integrated ultrashort pulse generators,” IEEE Journal of Selected Topics in Quantum Electronics 6, 1325–1331 (2000).
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In Extrasolar Planets: Today and Tomorrow, Astronomical Society of the Pacific Conference Proceedings (1)

F. Bouchy, C. Lovis, M. Mayor, F. Pepe, D. Queloz, S. Udry, C. Melo, and N. Santos, “New results on Doppler follow-up of planetary companions detected by OGLE,” In Extrasolar Planets: Today and Tomorrow, Astronomical Society of the Pacific Conference Proceedings 321, 15 (2004).

In SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy V (1)

R. A. Probst, G. Lo Curto, G. Avila, B. L. Canto Martins, J. R. de Medeiros, M. Esposito, J. I. González Hernández, T. W. Hänsch, R. Holzwarth, F. Kerber, I. C. Leão, A. Manescau, L. Pasquini, R. Rebolo-López, T. Steinmetz, T. Udem, and Y. Wu, “A laser frequency comb featuring sub-cm/s precision for routine operation on HARPS,” In SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy V 9147, 91471C (2014).

Laser & Photonics Reviews (1)

V. Torres-Company and A.M. Weiner, “Optical frequency comb technology for ultra-broadband radio-frequency photonics,” Laser & Photonics Reviews 8(3), 368–393 (2013).
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Living Reviews in Relativity (1)

J.-P. Uzan, “Varying constants, gravitation and cosmology,” Living Reviews in Relativity 14, 2 (2011).
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Monthly Notices Of The Royal Astronomical Society (2)

J. Liske, A. Grazian, E. Vanzella, M. Dessauges, M. Viel, L. Pasquini, M. Haehnelt, S. Cristiani, F. Pepe, G. Avila, P. Bonifacio, F. Bouchy, H. Dekker, B. Delabre, S. D’Odorico, V. D’Odorico, S. Levshakov, C. Lovis, M. Mayor, P. Molaro, L. Moscardini, M. T. Murphy, D. Queloz, P. Shaver, S. Udry, T. Wiklind, and S. Zucker, “Cosmic dynamics in the era of Extremely Large Telescopes,” Monthly Notices Of The Royal Astronomical Society 386, 1192–1218 (2008).
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M. T. Murphy, T. Udem, R. Holzwarth, A. Sizmann, L. Pasquini, C. Araujo-Hauck, H. Dekker, S. D’Odorico, M. Fischer, T. W. Hänsch, and A. Manescau, “High-precision wavelength calibration of astronomical spectrographs with laser frequency combs,” Monthly Notices Of The Royal Astronomical Society 380, 839–847 (2007).
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Nature (5)

P. Del’Haye, A. Schliesser, O. Arcizet, T. Wilken, R. Holzwarth, and T. J. Kippenberg, “Optical frequency comb generation from a monolithic microresonator,” Nature 450, 1214–1217 (2007).
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T. Udem, R. Holzwarth, and T. W. Hänsch, “Optical frequency metrology,” Nature 416, 233–237 (2002).
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C.-H. Li, A. J. Benedick, P. Fendel, A. G. Glenday, F. X. Kärtner, D. F. Phillips, D. Sasselov, A. Szentgyorgyi, and R. L. Walsworth, “A laser frequency comb that enables radial velocity measurements with a precision of 1cms−1,” Nature 452, 610–612 (2008).
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T. Wilken, G. L. Curto, R. A. Probst, T. Steinmetz, A. Manescau, L. Pasquini, J. I. González Hernández, R. Rebolo, T. W. Hänsch, T. Udem, and R. Holzwarth, “A spectrograph for exoplanet observations calibrated at the centimetre-per-second level,” Nature 485, 611–614 (2012).
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Nature Communications (1)

X. Yi, K. Vahala, J. Li, S. Diddams, G. Ycas, P. Plavchan, S. Leifer, J. Sandhu, G. Vasisht, P. Chen, P. Gao, J. Gagne, E. Furlan, M. Bottom, E. C. Martin, M. P. Fitzgerald, G. Doppmann, and C. Beichman, “Demonstration of a near-IR line-referenced electro-optical laser frequency comb for precision radial velocity measurements in astronomy,” Nature Communications 7, 10436 (2016).
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Optica (2)

Optics Express (9)

K. Kashiwagi, T. Kurokawa, Y. Okuyama, T. Mori, Y. Tanaka, Y. Yamamoto, and M. Hirano, “Direct generation of 12.5-GHz-spaced optical frequency comb with ultrabroad coverage in near-infrared region by cascaded fiber configuration,” Optics Express 24, 8120 (2016).
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A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, H. Nakano, T. Sogawa, A. Takada, and M. Koga, “Generation of 120-fs laser pulses at 1-GHz repetition rate derived from continuous wave laser diode,” Optics Express 19, 22402 (2011).
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A. Ishizawa, T. Nishikawa, A. Mizutori, H. Takara, A. Takada, T. Sogawa, and M. Koga, “Phase-noise characteristics of a 25-GHz-spaced optical frequency comb based on a phase- and intensity-modulated laser,” Optics Express 21, 29186 (2013).
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G. G. Ycas, F. Quinlan, S. A. Diddams, S. Osterman, S. Mahadevan, S. Redman, R. Terrien, L. Ramsey, C. F. Bender, B. Botzer, and S. Sigurdsson, “Demonstration of on-sky calibration of astronomical spectra using a 25 GHz near-IR laser frequency comb,” Optics Express 20, 6631 (2012).
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R. A. McCracken, J. M. Charsley, and D. T. Reid, “Decade of astrocombs: recent advances in frequency combs for astronomy,” Optics Express 25, 15058 (2017).
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G. Chang, C.-H. Li, D. F. Phillips, R. L. Walsworth, and F. X. Kärtner, “Toward a broadband astro-comb: effects of nonlinear spectral broadening in optical fibers,” Optics Express 18, 12736 (2010).
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G. Chang, C.-H. Li, D. F. Phillips, A. Szentgyorgyi, R. L. Walsworth, and F. X. Kärtner, “Optimization of filtering schemes for broadband astro-combs,” Optics Express 20, 24987 (2012).
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R. A. Probst, T. Steinmetz, T. Wilken, H. Hundertmark, S. P. Stark, G. K. L. Wong, P. S. J. Russell, T. W. Hänsch, R. Holzwarth, and T. Udem, “Nonlinear amplification of side-modes in frequency combs,” Optics Express 21, 11670 (2013).
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R. A. McCracken, É. Depagne, R. B. Kuhn, N. Erasmus, L. A. Crause, and D. T. Reid, “Wavelength calibration of a high resolution spectrograph with a partially stabilized 15-GHz astrocomb from 550 to 890 nm,” Optics Express 25, 6450 (2017).
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Optics Letters (1)

I. Morohashi, T. Sakamoto, H. Sotobayashi, T. Kawanishi, I. Hosako, and M. Tsuchiya, “Widely repetition-tunable 200 fs pulse source using a Mach Zehnder-modulator-based flat comb generator and dispersion-flattened dispersion-decreasing fiber,” Optics Letters 33, 1192 (2008).
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Publications of the Astronomical Society of the Pacific (1)

J. Baudrand and G. A. H. Walker, “Modal noise in high-resolution, fiber-fed spectra: a study and simple cure,” Publications of the Astronomical Society of the Pacific 113, 851–858 (2001).
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Rev. Mod. Phys. (1)

S. T. Cundiff and J. Ye, “Colloquium: Femtosecond optical frequency combs,” Rev. Mod. Phys. 75, 325–342 (2003).
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Review of Scientific Instruments (1)

F. Quinlan, G. Ycas, S. Osterman, and S. A. Diddams, “A 12.5 GHz-spaced optical frequency comb spanning 400 nm for near-infrared astronomical spectrograph calibration,” Review of Scientific Instruments 81(6), 063105 (2010).
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Science (4)

T. Steinmetz, T. Wilken, C. Araujo-Hauck, R. Holzwarth, T. W. Hänsch, L. Pasquini, A. Manescau, S. D’Odorico, M. T. Murphy, T. Kentischer, W. Schmidt, and T. Udem, “Laser frequency combs for astronomical observations,” Science 321, 1335 (2008).
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T. J. Kippenberg, R. Holzwarth, and S. A. Diddams, “Microresonator-based optical frequency combs,” Science 332, 555 (2011).
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T. J. Kippenberg, A. L. Gaeta, M. Lipson, and M. L. Gorodetsky, “Dissipative Kerr solitons in optical microresonators,” Science 361, 6402 (2018).
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D. J. Jones, S. A. Diddams, J. K. Ranka, A. Stentz, R. S. Windeler, J. L. Hall, and S. T. Cundiff, “Carrier-envelope phase control of femtosecond mode-locked lasers and direct optical frequency synthesis,” Science,  288, 635–640 (2000).
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Solar Physics (1)

H.-P. Doerr, T. Steinmetz, R. Holzwarth, T. Kentischer, and W. Schmidt, “A laser frequency comb system for absolute calibration of the VTT echelle spectrograph,” Solar Physics 280, 663–670 (2012).
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SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV (2)

F. Wildi, B. Chazelas, and F. Pepe, “A passive cost-effective solution for the high accuracy wavelength calibration of radial velocity spectrographs,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84468E (2012).
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E. Oliva, L. Origlia, R. Maiolino, C. Baffa, V. Biliotti, P. Bruno, G. Falcini, V. Gavriousev, F. Ghinassi, E. Giani, M. Gonzalez, F. Leone, M. Lodi, F. Massi, I. Mochi, P. Montegriffo, M. Pedani, E. Rossetti, S. Scuderi, M. Sozzi, and A. Tozzi, “The GIANO spectrometer: towards its first light at the TNG,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy IV 8446, 84463T (2012).
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SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI (1)

N. Tamura, N. Takato, A. Shimono, Y. Moritani, K. Yabe, Y. Ishizuka, A. Ueda, Y. Kamata, H. Aghazarian, S. Arnouts, G. Barban, R. H. Barkhouser, R. C. Borges, D. F. Braun, M. A. Carr, P.-Y. Chabaud, Y.-C. Chang, H.-Y. Chen, M. Chiba, R. C. Y. Chou, Y.-H. Chu, J. Cohen, R. P. de Almeida, A. C. de Oliveira, L. S. de Oliveira, R. G. Dekany, K. Dohlen, J. B. dos Santos, L. H. dos Santos, R. Ellis, M. Fabricius, D. Ferrand, D. Ferreira, M. Golebiowski, J. E. Greene, J. Gross, J. E. Gunn, R. Hammond, A. Harding, M. Hart, T. M. Heckman, C. M. Hirata, P. Ho, S. C. Hope, L. Hovland, S.-F. Hsu, Y.-S. Hu, P.-J. Huang, M. Jaquet, Y. Jing, J. Karr, M. Kimura, M. E. King, E. Komatsu, V. Le Brun, O. Le Fèvre, A. Le Fur, D. Le Mignant, H.-H. Ling, C. P. Loomis, R. H. Lupton, F. Madec, P. Mao, L. S. Marrara, C. Mendes de Oliveira, Y. Minowa, C. Morantz, H. Murayama, G. J. Murray, Y. Ohyama, J. Orndorff, S. Pascal, J. M. Pereira, D. Reiley, M. Reinecke, A. Ritter, M. Roberts, M. A. Schwochert, M. D. Seiffert, S. A. Smee, L. Sodre, D. N. Spergel, A. J. Steinkraus, M. A. Strauss, C. Surace, Y. Suto, N. Suzuki, J. Swinbank, P. J. Tait, M. Takada, T. Tamura, Y. Tanaka, L. Tresse, O. Verducci, D. Vibert, C. Vidal, S.-Y. Wang, C.-Y. Wen, C.-H. Yan, and N. Yasuda, “Prime Focus Spectrograph (PFS) for the Subaru telescope: overview, recent progress, and future perspectives,” SPIE proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99081M (2016).
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A. Brucalassi, F. Grupp, H. Kellermann, L. Wang, F. Lang-Bardl, N. Baisert, S. M. Hu, U. Hopp, and R. Bender, “Stability of the FOCES spectrograph using an astro-frequency comb as calibrator,” SPIE Proceedings: Ground-based and Airborne Instrumentation for Astronomy VI 9908, 99085W (2016).
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Other (6)

E. Obrzud, M. Rainer, A. Harutyunyan, M. H. Anderson, M. Geiselmann, B. Chazelas, S. Kundermann, S. Lecomte, M. Cecconi, A. Ghedina, E. Molinari, F. Pepe, F. Wildi, F. Bouchy, T. J. Kippenberg, and T. Herr, “A microphotonic astrocomb,” ArXiv e-prints (2017).

M.-G. Suh, X. Yi, Y.-H. Lai, S. Leifer, I. S. Grudinin, G. Vasisht, E. C. Martin, M. P. Fitzgerald, G. Doppmann, J. Wang, D. Mawet, S. B. Papp, S. A. Diddams, C. Beichman, and K. Vahala, “Searching for exoplanets using a microresonator astrocomb,” ArXiv e-prints (2018).

R. Claudi, S. Benatti, I. Carleo, A. Ghedina, G. Micela, E. Molinari, E. Oliva, A. Tozzi, and Giarps Team, “GIARPS: the VIS-NIR high precision radial velocity facility TNG,” In Frontier Research in Astrophysics II, FRAPWS2016070 (2016).

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Figures (5)

Fig. 1
Fig. 1 Radial velocity measurement and astronomical spectrograph calibration. a) Exoplanet detection with radial velocity method. Due to the gravitational pull of a companion, the host star follows an orbit around the system’s centre of mass resulting in periodic Doppler shifts of spectral features. b) Scheme of a cross-dispersed Echelle-spectrograph. c) Examples of wavelength calibrators and their spectra: hollow cathode lamps, Fabry-Pérot cavity and laser frequency combs.
Fig. 2
Fig. 2 Electro-optical modulation-based frequency comb set-up. a) Scheme representing the EOM-based LFC. MLL - mode-locked laser, IM - intensity modulator, PM - phase modulator, CFBG - chirped fiber-Bragg grating, EDFA - erbium-doped fiber amplifier, FBG - fiber-Bragg grating b) Resulting spectrum spanning 400 nm within 20dB with line spacing of 14.5 GHz. Inset: Heterodyne beatnote of the comb with an additional laser measured at 1430 nm showing a width of 1 MHz corresponding to the linewidth of the 1430 nm laser and providing an upper limit to the EOM LFC linewidth.
Fig. 3
Fig. 3 Spectrometer raw data. a) Echelle-spectrum of a uranium-neon hollow cathode lamp. b) Echelle-spectrum of the electro-optic modulation-based laser frequency comb. The dark area in the middle of the 49 th order corresponds to the suppressed pump laser. c) The vertical extend of each comb line is given by the slit height, the horizontal profile by the spectrometer’s point-spread-function. d) 1-dimensional data obtained by summing the signal in the analogue-to-digital units (ADU) along the slit with a Gaussian fit. e) GIANO-B spectrograph at the Telescopio Nazionale Galileo [48].
Fig. 4
Fig. 4 Wavelength calibration and spectrograph drift measurement. a) Frequency as a function of pixel for each spectrograph order as derived from assigning comb-frequencies to comb-positions. b) The same as a) but for order 48 with a third order polynomial subtracted for clarity. Dashed gray line indicates detector stitching point. c) Zoom into the inner part of b) showing a discontinuity due to the detector stitching. d) Wavelength calibration for order 48 obtained with the BOK free-knot spline. e) Spectrograph drift measured with the LFC (blue triangles) and the uranium-neon hollow-cathode lamp (red dots). Insets show the color-coded differential drift observed on the detector array for three LFC exposures. Grey area indicates the order 49 not taken into account for the analysis.
Fig. 5
Fig. 5 Relative radial velocities for stellar and telluric lines. a) Top: Spectrum of HD221354. Middle: Telluric spectrum from TAPAS. Bottom: LFC spectrum. b) Left: Change of apparent radial velocities of HD221354 absorption lines (orange markers) and telluric lines (purple markers) as a function of their wavelength. Right: Histogram of obtained per-line values for stellar and telluric lines (one outlier at +500 m s not shown). The dashed line indicates the fit of a bimodal Gaussian distribution yielding apparent relative radial velocity shifts of +32 m s for the telluric and −536 m s for the stellar spectrum. The latter reflects the difference in Earth’s barycentric velocity between the two observational epochs of −544 m s .

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