Abstract

We present a compact, simple design for the generation and tuning of both the spot size and effective focal length of Bessel-like beams. In particular, this setup provides an important tool for the use of Bessel-like beams with high-power, femtosecond laser systems. Using a shallow angle axicon in conjunction with a spherical lens, we show that it is possible to focus Bessel-like modes to comparable focal spot sizes to sharp axicons while maintaining a long effective focal length. The resulting focal profiles are characterized in detail using an accurate high dynamic range imaging technique. Quantitatively, we introduce a metric (R0.8) which defines the spot-size containing 80% of the total energy. Our setup overcomes the typical compromise between long working distances and small spot sizes. This is particularly relevant for strong-field physics where most experiments must operate in vacuum.

© 2017 Optical Society of America

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References

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2016 (4)

X. Yu, C. A. Trallero-Herrero, and S. Lei, “Materials processing with superposed Bessel beams,” Appl. Surf. Sci. 360, 833–839 (2016).
[Crossref]

C. Vinegoni, C. Leon Swisher, P. Fumene Feruglio, R. J. Giedt, D. L. Rousso, S. Stapleton, and R. Weissleder, “Real-time high dynamic range laser scanning microscopy,” Nat. Commun. 7, 11077 (2016).
[Crossref] [PubMed]

J. Dudutis, P. GeČys, and G. RaČiukaitis, “Non-ideal axicon-generated Bessel beam application for intra-volume glass modification,” Opt. Express 24(25), 28433–28443 (2016).
[Crossref] [PubMed]

W. C. Wallace, O. Ghafur, C. Khurmi, S. Sainadh U, J. E. Calvert, D. E. Laban, M. G. Pullen, K. Bartschat, A. N. Grum-Grzhimailo, D. Wells, H. M. Quiney, X. M. Tong, I. V. Litvinyuk, R. T. Sang, and D. Kielpinski, “Precise and accurate measurements of strong-field photoionization and a transferable laser intensity calibration standard,” Phys. Rev. Lett. 117(5), 053001 (2016).
[Crossref] [PubMed]

2015 (1)

C. Xie, V. Jukna, C. Milián, R. Giust, I. Ouadghiri-Idrissi, T. Itina, J. M. Dudley, A. Couairon, and F. Courvoisier, “Tubular filamentation for laser material processing,” Sci. Rep. 5, 8914 (2015).
[Crossref] [PubMed]

2013 (3)

A. D. Shiner, C. Trallero-Herrero, N. Kajumba, B. E. Schmidt, J. B. Bertrand, K. T. Kim, H.-C. Bandulet, D. Comtois, J.-C. Kieffer, D. M. Rayner, P. B. Corkum, F. Légaré, and D. M. Villeneuve, “High harmonic cutoff energy scaling and laser intensity measurement with a 1.8 μm laser source,” J. Mod. Opt. 60(17), 1458–1465 (2013).
[Crossref]

F. Courvoisier, J. Zhang, M. K. Bhuyan, M. Jacquot, and J. M. Dudley, “Applications of femtosecond Bessel beams to laser ablation,” Appl. Phys., A Mater. Sci. Process. 112(1), 29–34 (2013).
[Crossref]

C. Snoeyink and S. Wereley, “Single-image far-field subdiffraction limit imaging with axicon,” Opt. Lett. 38(5), 625–627 (2013).
[Crossref] [PubMed]

2012 (4)

D. N. Schimpf, J. Schulte, W. P. Putnam, and F. X. Kärtner, “Generalizing higher-order Bessel-Gauss beams: analytical description and demonstration,” Opt. Express 20(24), 26852–26867 (2012).
[Crossref] [PubMed]

D. Faccio, E. Rubino, A. Lotti, A. Couairon, A. Dubietis, G. Tamošauskas, D. G. Papazoglou, and S. Tzortzakis, “Nonlinear light-matter interaction with femtosecond high-angle Bessel beams,” Phys. Rev. A: At. Mol. Opt. Phys. 85(3), 033829 (2012).
[Crossref]

S. Akturk, “Tailored-beam ultrashort laser pulses,” Quantum Phys. Lett. 112, 97–112 (2012).

C. Trallero-Herrero, C. Jin, B. E. Schmidt, A. D. Shiner, J.-C. Kieffer, P. B. Corkum, D. M. Villeneuve, C. D. Lin, F. Légaré, and A. T. Le, “Generation of broad XUV continuous high harmonic spectra and isolated attosecond pulses with intense mid-infrared lasers,” J. Phys. At. Mol. Opt. Phys. 45(1), 011001 (2012).
[Crossref]

2010 (2)

M. C. Chen, P. Arpin, T. Popmintchev, M. Gerrity, B. Zhang, M. Seaberg, D. Popmintchev, M. M. Murnane, and H. C. Kapteyn, “Bright, coherent, ultrafast soft X-ray harmonics spanning the water window from a tabletop light source,” Phys. Rev. Lett. 105(17), 173901 (2010).
[Crossref] [PubMed]

V. Belyi, A. Forbes, N. Kazak, N. Khilo, and P. Ropot, “Bessel-like beams with z-dependent cone angles,” Opt. Express 18(3), 1966–1973 (2010).
[Crossref] [PubMed]

2009 (6)

H. Valtna-Lukner, P. Bowlan, M. Lõhmus, P. Piksarv, R. Trebino, and P. Saari, “Measuring the spatio-temporal field of diffracting ultrashort Bessel-type light bullets,” Opt. Express 17, 2 (2009).
[Crossref]

A. D. Shiner, C. Trallero-Herrero, N. Kajumba, H. C. Bandulet, D. Comtois, F. Légaré, M. Giguère, J. C. Kieffer, P. B. Corkum, and D. M. Villeneuve, “Wavelength scaling of high harmonic generation efficiency,” Phys. Rev. Lett. 103(7), 073902 (2009).
[Crossref] [PubMed]

T. Popmintchev, M.-C. Chen, A. Bahabad, M. Gerrity, P. Sidorenko, O. Cohen, I. P. Christov, M. M. Murnane, and H. C. Kapteyn, “Phase matching of high harmonic generation in the soft and hard X-ray regions of the spectrum,” Proc. Natl. Acad. Sci. U.S.A. 106(26), 10516–10521 (2009).
[Crossref] [PubMed]

L. Van Dao, K. B. Dinh, and P. Hannaford, “Generation of extreme ultraviolet radiation with a Bessel-Gaussian beam,” Appl. Phys. Lett. 95(13), 131114 (2009).
[Crossref]

H. Dachraoui, T. Auguste, A. Helmstedt, P. Bartz, M. Michelswirth, N. Mueller, W. Pfeiffer, P. Salieres, and U. Heinzmann, “Interplay between absorption, dispersion and refraction in high-order harmonic generation,” J. Phys. At. Mol. Opt. Phys. 42(17), 175402 (2009).
[Crossref]

F. Krausz and M. Ivanov, “Attosecond physics,” Rev. Mod. Phys. 81(1), 163–234 (2009).
[Crossref]

2008 (7)

A. Averchi, D. Faccio, R. Berlasso, M. Kolesik, J. V. Moloney, A. Couairon, and P. Di Trapani, ““Phase matching with pulsed Bessel beams for high-order harmonic generation,” Phys. Rev. A: At. Mol. Opt. Phys. 77(2), 021802 (2008).
[Crossref]

M. B. Gaarde, J. L. Tate, and K. J. Schafer, “Macroscopic aspects of attosecond pulse generation,” J. Phys. At. Mol. Opt. Phys. 41(13), 132001 (2008).
[Crossref]

T. Auguste, O. Gobert, and B. Carré, “Numerical study on high-order harmonic generation by a Bessel-Gauss laser beam,” Phys. Rev. A: At. Mol. Opt. Phys. 78(3), 033411 (2008).
[Crossref]

R. Grunwald, M. Bock, V. Kebbel, S. Huferath, U. Neumann, G. Steinmeyer, G. Stibenz, J.-L. Néron, and M. Piché, “Ultrashort-pulsed truncated polychromatic Bessel-Gauss beams,” Opt. Express 16(2), 1077–1089 (2008).
[Crossref] [PubMed]

P. Polynkin, M. Kolesik, A. Roberts, D. Faccio, P. Di Trapani, and J. Moloney, “Generation of extended plasma channels in air using femtosecond Bessel beams,” Opt. Express 16(20), 15733–15740 (2008).
[Crossref] [PubMed]

S. Akturk, B. Zhou, B. Pasquiou, M. Franco, and A. Mysyrowicz, “Intensity distribution around the focal regions of real axicons,” Opt. Commun. 281(17), 4240–4244 (2008).
[Crossref]

O. Brzobohatý, T. Cizmár, and P. Zemánek, “High quality quasi-Bessel beam generated by round-tip axicon,” Opt. Express 16(17), 12688–12700 (2008).
[Crossref] [PubMed]

2007 (1)

X. Tsampoula, V. Garcés-Chávez, M. Comrie, D. J. Stevenson, B. Agate, C. T. A. Brown, F. Gunn-Moore, and K. Dholakia, “Femtosecond cellular transfection using a nondiffracting light beam,” Appl. Phys. Lett. 91(5), 053902 (2007).
[Crossref]

2006 (1)

2005 (1)

D. McGloin and K. Dholakia, “Bessel beams: diffraction in a new light,” Contemp. Phys. 46(1), 15–28 (2005).
[Crossref]

2004 (1)

M. Lei and B. Yao, “Characteristics of beam profile of Gaussian beam passing through an axicon,” Opt. Commun. 239(4-6), 367–372 (2004).
[Crossref]

2003 (1)

D. G. Grier, “A revolution in optical manipulation,” Nature 424(6950), 810–816 (2003).
[Crossref] [PubMed]

2002 (3)

Z. Ding, H. Ren, Y. Zhao, J. S. Nelson, and Z. Chen, “High-resolution optical coherence tomography over a large depth range with an axicon lens,” Opt. Lett. 27(4), 243–245 (2002).
[Crossref] [PubMed]

A. A. Babin, D. V. Kartashov, and D. I. Kulagin, “Focusing femtosecond radiation with an axicon,” Quantum Electron. 32(4), 308–310 (2002).
[Crossref]

M. Nisoli, E. Priori, G. Sansone, S. Stagira, G. Cerullo, S. De Silvestri, C. Altucci, R. Bruzzese, C. de Lisio, P. Villoresi, L. Poletto, M. Pascolini, and G. Tondello, “High-brightness high-order harmonic generation by truncated bessel beams in the sub-10-fs regime,” Phys. Rev. Lett. 88(3), 033902 (2002).
[Crossref] [PubMed]

2001 (2)

J. Arlt, K. Dholakia, J. Soneson, and E. M. Wright, “Optical dipole traps and atomic waveguides based on Bessel light beams,” Phys. Rev. A 63(6), 063602 (2001).
[Crossref]

J. Arlt, V. Garces-Chavez, W. Sibbett, and K. Dholakia, “Optical micromanipulation using a Bessel light beam,” Opt. Commun. 197(4-6), 239–245 (2001).
[Crossref]

2000 (2)

V. Jarutis, R. Paškauskas, and A. Stabinis, “Focusing of Laguerre-Gaussian beams by axicon,” Opt. Commun. 184(1-4), 105–112 (2000).
[Crossref]

C. Altucci, R. Bruzzese, D. D’Antuoni, C. de Lisio, and S. Solimeno, “Harmonic generation in gases by use of Bessel–Gauss laser beams,” J. Opt. Soc. Am. B 17(1), 34 (2000).
[Crossref]

1997 (3)

P. Balcou, P. Salieres, A. L’Huillier, and M. Lewenstein, “Generalized phase-matching conditions for high harmonics: the role of field-gradient forces,” Phys. Rev. A 55(4), 3204–3210 (1997).
[Crossref]

M. Nisoli, S. De Silvestri, O. Svelto, R. Szipöcs, K. Ferencz, C. Spielmann, S. Sartania, and F. Krausz, “Compression of high-energy laser pulses below 5 fs,” Opt. Lett. 22(8), 522–524 (1997).
[Crossref] [PubMed]

P. Saari and H. Sõnajalg, “Pulsed Bessel beams,” Laser Phys. 7, 32–39 (1997).

1996 (1)

M. Nisoli, S. De Silvestri, and O. Svelto, “Generation of high energy 10 fs pulses by a new pulse compression technique,” Appl. Phys. Lett. 68(20), 2793–2795 (1996).
[Crossref]

1991 (1)

1987 (2)

J. Durnin, J. Miceli, and J. H. Eberly, “Diffraction-free beams,” Phys. Rev. Lett. 58(15), 1499–1501 (1987).
[Crossref] [PubMed]

F. Gori, C. Guattari, and C. Padovani, “Bessel-Gauss beams,” Opt. Commun. 64(6), 491–495 (1987).
[Crossref]

1978 (1)

1964 (1)

E. A. J. Marcatili and R. A. Schmeltzer, “Hollow metallic and dielectric waveguides for long distance optical transmission and lasers,” Bell Syst. Tech. J. 43(4), 1783–1809 (1964).
[Crossref]

Agate, B.

X. Tsampoula, V. Garcés-Chávez, M. Comrie, D. J. Stevenson, B. Agate, C. T. A. Brown, F. Gunn-Moore, and K. Dholakia, “Femtosecond cellular transfection using a nondiffracting light beam,” Appl. Phys. Lett. 91(5), 053902 (2007).
[Crossref]

Akturk, S.

S. Akturk, “Tailored-beam ultrashort laser pulses,” Quantum Phys. Lett. 112, 97–112 (2012).

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P. Balcou, P. Salieres, A. L’Huillier, and M. Lewenstein, “Generalized phase-matching conditions for high harmonics: the role of field-gradient forces,” Phys. Rev. A 55(4), 3204–3210 (1997).
[Crossref]

Sang, R. T.

W. C. Wallace, O. Ghafur, C. Khurmi, S. Sainadh U, J. E. Calvert, D. E. Laban, M. G. Pullen, K. Bartschat, A. N. Grum-Grzhimailo, D. Wells, H. M. Quiney, X. M. Tong, I. V. Litvinyuk, R. T. Sang, and D. Kielpinski, “Precise and accurate measurements of strong-field photoionization and a transferable laser intensity calibration standard,” Phys. Rev. Lett. 117(5), 053001 (2016).
[Crossref] [PubMed]

Sansone, G.

M. Nisoli, E. Priori, G. Sansone, S. Stagira, G. Cerullo, S. De Silvestri, C. Altucci, R. Bruzzese, C. de Lisio, P. Villoresi, L. Poletto, M. Pascolini, and G. Tondello, “High-brightness high-order harmonic generation by truncated bessel beams in the sub-10-fs regime,” Phys. Rev. Lett. 88(3), 033902 (2002).
[Crossref] [PubMed]

Sartania, S.

Schafer, K. J.

M. B. Gaarde, J. L. Tate, and K. J. Schafer, “Macroscopic aspects of attosecond pulse generation,” J. Phys. At. Mol. Opt. Phys. 41(13), 132001 (2008).
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M. B. Gaarde and K. J. Schafer, “Generating single attosecond pulses via spatial filtering,” Opt. Lett. 31(21), 3188–3190 (2006).
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Schmeltzer, R. A.

E. A. J. Marcatili and R. A. Schmeltzer, “Hollow metallic and dielectric waveguides for long distance optical transmission and lasers,” Bell Syst. Tech. J. 43(4), 1783–1809 (1964).
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Schmidt, B. E.

A. D. Shiner, C. Trallero-Herrero, N. Kajumba, B. E. Schmidt, J. B. Bertrand, K. T. Kim, H.-C. Bandulet, D. Comtois, J.-C. Kieffer, D. M. Rayner, P. B. Corkum, F. Légaré, and D. M. Villeneuve, “High harmonic cutoff energy scaling and laser intensity measurement with a 1.8 μm laser source,” J. Mod. Opt. 60(17), 1458–1465 (2013).
[Crossref]

C. Trallero-Herrero, C. Jin, B. E. Schmidt, A. D. Shiner, J.-C. Kieffer, P. B. Corkum, D. M. Villeneuve, C. D. Lin, F. Légaré, and A. T. Le, “Generation of broad XUV continuous high harmonic spectra and isolated attosecond pulses with intense mid-infrared lasers,” J. Phys. At. Mol. Opt. Phys. 45(1), 011001 (2012).
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Schulte, J.

Seaberg, M.

M. C. Chen, P. Arpin, T. Popmintchev, M. Gerrity, B. Zhang, M. Seaberg, D. Popmintchev, M. M. Murnane, and H. C. Kapteyn, “Bright, coherent, ultrafast soft X-ray harmonics spanning the water window from a tabletop light source,” Phys. Rev. Lett. 105(17), 173901 (2010).
[Crossref] [PubMed]

Shiner, A. D.

A. D. Shiner, C. Trallero-Herrero, N. Kajumba, B. E. Schmidt, J. B. Bertrand, K. T. Kim, H.-C. Bandulet, D. Comtois, J.-C. Kieffer, D. M. Rayner, P. B. Corkum, F. Légaré, and D. M. Villeneuve, “High harmonic cutoff energy scaling and laser intensity measurement with a 1.8 μm laser source,” J. Mod. Opt. 60(17), 1458–1465 (2013).
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C. Trallero-Herrero, C. Jin, B. E. Schmidt, A. D. Shiner, J.-C. Kieffer, P. B. Corkum, D. M. Villeneuve, C. D. Lin, F. Légaré, and A. T. Le, “Generation of broad XUV continuous high harmonic spectra and isolated attosecond pulses with intense mid-infrared lasers,” J. Phys. At. Mol. Opt. Phys. 45(1), 011001 (2012).
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A. D. Shiner, C. Trallero-Herrero, N. Kajumba, H. C. Bandulet, D. Comtois, F. Légaré, M. Giguère, J. C. Kieffer, P. B. Corkum, and D. M. Villeneuve, “Wavelength scaling of high harmonic generation efficiency,” Phys. Rev. Lett. 103(7), 073902 (2009).
[Crossref] [PubMed]

Sibbett, W.

J. Arlt, V. Garces-Chavez, W. Sibbett, and K. Dholakia, “Optical micromanipulation using a Bessel light beam,” Opt. Commun. 197(4-6), 239–245 (2001).
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T. Popmintchev, M.-C. Chen, A. Bahabad, M. Gerrity, P. Sidorenko, O. Cohen, I. P. Christov, M. M. Murnane, and H. C. Kapteyn, “Phase matching of high harmonic generation in the soft and hard X-ray regions of the spectrum,” Proc. Natl. Acad. Sci. U.S.A. 106(26), 10516–10521 (2009).
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Snoeyink, C.

Solimeno, S.

Sõnajalg, H.

P. Saari and H. Sõnajalg, “Pulsed Bessel beams,” Laser Phys. 7, 32–39 (1997).

Soneson, J.

J. Arlt, K. Dholakia, J. Soneson, and E. M. Wright, “Optical dipole traps and atomic waveguides based on Bessel light beams,” Phys. Rev. A 63(6), 063602 (2001).
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Spielmann, C.

Stabinis, A.

V. Jarutis, R. Paškauskas, and A. Stabinis, “Focusing of Laguerre-Gaussian beams by axicon,” Opt. Commun. 184(1-4), 105–112 (2000).
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Stagira, S.

M. Nisoli, E. Priori, G. Sansone, S. Stagira, G. Cerullo, S. De Silvestri, C. Altucci, R. Bruzzese, C. de Lisio, P. Villoresi, L. Poletto, M. Pascolini, and G. Tondello, “High-brightness high-order harmonic generation by truncated bessel beams in the sub-10-fs regime,” Phys. Rev. Lett. 88(3), 033902 (2002).
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Stapleton, S.

C. Vinegoni, C. Leon Swisher, P. Fumene Feruglio, R. J. Giedt, D. L. Rousso, S. Stapleton, and R. Weissleder, “Real-time high dynamic range laser scanning microscopy,” Nat. Commun. 7, 11077 (2016).
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Steinmeyer, G.

Stevenson, D. J.

X. Tsampoula, V. Garcés-Chávez, M. Comrie, D. J. Stevenson, B. Agate, C. T. A. Brown, F. Gunn-Moore, and K. Dholakia, “Femtosecond cellular transfection using a nondiffracting light beam,” Appl. Phys. Lett. 91(5), 053902 (2007).
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Stibenz, G.

Svelto, O.

M. Nisoli, S. De Silvestri, O. Svelto, R. Szipöcs, K. Ferencz, C. Spielmann, S. Sartania, and F. Krausz, “Compression of high-energy laser pulses below 5 fs,” Opt. Lett. 22(8), 522–524 (1997).
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M. Nisoli, S. De Silvestri, and O. Svelto, “Generation of high energy 10 fs pulses by a new pulse compression technique,” Appl. Phys. Lett. 68(20), 2793–2795 (1996).
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Szipöcs, R.

Tamošauskas, G.

D. Faccio, E. Rubino, A. Lotti, A. Couairon, A. Dubietis, G. Tamošauskas, D. G. Papazoglou, and S. Tzortzakis, “Nonlinear light-matter interaction with femtosecond high-angle Bessel beams,” Phys. Rev. A: At. Mol. Opt. Phys. 85(3), 033829 (2012).
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Tate, J. L.

M. B. Gaarde, J. L. Tate, and K. J. Schafer, “Macroscopic aspects of attosecond pulse generation,” J. Phys. At. Mol. Opt. Phys. 41(13), 132001 (2008).
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Timilsina, P.

S. Zigo, A. T. Le, P. Timilsina, and C. T. Herrero, “Ionization study of isomeric molecules in strong-field laser pulses,” Sci. Rep. (to appear).

Tondello, G.

M. Nisoli, E. Priori, G. Sansone, S. Stagira, G. Cerullo, S. De Silvestri, C. Altucci, R. Bruzzese, C. de Lisio, P. Villoresi, L. Poletto, M. Pascolini, and G. Tondello, “High-brightness high-order harmonic generation by truncated bessel beams in the sub-10-fs regime,” Phys. Rev. Lett. 88(3), 033902 (2002).
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Tong, X. M.

W. C. Wallace, O. Ghafur, C. Khurmi, S. Sainadh U, J. E. Calvert, D. E. Laban, M. G. Pullen, K. Bartschat, A. N. Grum-Grzhimailo, D. Wells, H. M. Quiney, X. M. Tong, I. V. Litvinyuk, R. T. Sang, and D. Kielpinski, “Precise and accurate measurements of strong-field photoionization and a transferable laser intensity calibration standard,” Phys. Rev. Lett. 117(5), 053001 (2016).
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A. D. Shiner, C. Trallero-Herrero, N. Kajumba, B. E. Schmidt, J. B. Bertrand, K. T. Kim, H.-C. Bandulet, D. Comtois, J.-C. Kieffer, D. M. Rayner, P. B. Corkum, F. Légaré, and D. M. Villeneuve, “High harmonic cutoff energy scaling and laser intensity measurement with a 1.8 μm laser source,” J. Mod. Opt. 60(17), 1458–1465 (2013).
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C. Trallero-Herrero, C. Jin, B. E. Schmidt, A. D. Shiner, J.-C. Kieffer, P. B. Corkum, D. M. Villeneuve, C. D. Lin, F. Légaré, and A. T. Le, “Generation of broad XUV continuous high harmonic spectra and isolated attosecond pulses with intense mid-infrared lasers,” J. Phys. At. Mol. Opt. Phys. 45(1), 011001 (2012).
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A. D. Shiner, C. Trallero-Herrero, N. Kajumba, H. C. Bandulet, D. Comtois, F. Légaré, M. Giguère, J. C. Kieffer, P. B. Corkum, and D. M. Villeneuve, “Wavelength scaling of high harmonic generation efficiency,” Phys. Rev. Lett. 103(7), 073902 (2009).
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Trallero-Herrero, C. A.

X. Yu, C. A. Trallero-Herrero, and S. Lei, “Materials processing with superposed Bessel beams,” Appl. Surf. Sci. 360, 833–839 (2016).
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Trebino, R.

H. Valtna-Lukner, P. Bowlan, M. Lõhmus, P. Piksarv, R. Trebino, and P. Saari, “Measuring the spatio-temporal field of diffracting ultrashort Bessel-type light bullets,” Opt. Express 17, 2 (2009).
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Tsampoula, X.

X. Tsampoula, V. Garcés-Chávez, M. Comrie, D. J. Stevenson, B. Agate, C. T. A. Brown, F. Gunn-Moore, and K. Dholakia, “Femtosecond cellular transfection using a nondiffracting light beam,” Appl. Phys. Lett. 91(5), 053902 (2007).
[Crossref]

Tzortzakis, S.

D. Faccio, E. Rubino, A. Lotti, A. Couairon, A. Dubietis, G. Tamošauskas, D. G. Papazoglou, and S. Tzortzakis, “Nonlinear light-matter interaction with femtosecond high-angle Bessel beams,” Phys. Rev. A: At. Mol. Opt. Phys. 85(3), 033829 (2012).
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H. Valtna-Lukner, P. Bowlan, M. Lõhmus, P. Piksarv, R. Trebino, and P. Saari, “Measuring the spatio-temporal field of diffracting ultrashort Bessel-type light bullets,” Opt. Express 17, 2 (2009).
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L. Van Dao, K. B. Dinh, and P. Hannaford, “Generation of extreme ultraviolet radiation with a Bessel-Gaussian beam,” Appl. Phys. Lett. 95(13), 131114 (2009).
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A. D. Shiner, C. Trallero-Herrero, N. Kajumba, B. E. Schmidt, J. B. Bertrand, K. T. Kim, H.-C. Bandulet, D. Comtois, J.-C. Kieffer, D. M. Rayner, P. B. Corkum, F. Légaré, and D. M. Villeneuve, “High harmonic cutoff energy scaling and laser intensity measurement with a 1.8 μm laser source,” J. Mod. Opt. 60(17), 1458–1465 (2013).
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C. Trallero-Herrero, C. Jin, B. E. Schmidt, A. D. Shiner, J.-C. Kieffer, P. B. Corkum, D. M. Villeneuve, C. D. Lin, F. Légaré, and A. T. Le, “Generation of broad XUV continuous high harmonic spectra and isolated attosecond pulses with intense mid-infrared lasers,” J. Phys. At. Mol. Opt. Phys. 45(1), 011001 (2012).
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A. D. Shiner, C. Trallero-Herrero, N. Kajumba, H. C. Bandulet, D. Comtois, F. Légaré, M. Giguère, J. C. Kieffer, P. B. Corkum, and D. M. Villeneuve, “Wavelength scaling of high harmonic generation efficiency,” Phys. Rev. Lett. 103(7), 073902 (2009).
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Villoresi, P.

M. Nisoli, E. Priori, G. Sansone, S. Stagira, G. Cerullo, S. De Silvestri, C. Altucci, R. Bruzzese, C. de Lisio, P. Villoresi, L. Poletto, M. Pascolini, and G. Tondello, “High-brightness high-order harmonic generation by truncated bessel beams in the sub-10-fs regime,” Phys. Rev. Lett. 88(3), 033902 (2002).
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Vinegoni, C.

C. Vinegoni, C. Leon Swisher, P. Fumene Feruglio, R. J. Giedt, D. L. Rousso, S. Stapleton, and R. Weissleder, “Real-time high dynamic range laser scanning microscopy,” Nat. Commun. 7, 11077 (2016).
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Wallace, W. C.

W. C. Wallace, O. Ghafur, C. Khurmi, S. Sainadh U, J. E. Calvert, D. E. Laban, M. G. Pullen, K. Bartschat, A. N. Grum-Grzhimailo, D. Wells, H. M. Quiney, X. M. Tong, I. V. Litvinyuk, R. T. Sang, and D. Kielpinski, “Precise and accurate measurements of strong-field photoionization and a transferable laser intensity calibration standard,” Phys. Rev. Lett. 117(5), 053001 (2016).
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Weissleder, R.

C. Vinegoni, C. Leon Swisher, P. Fumene Feruglio, R. J. Giedt, D. L. Rousso, S. Stapleton, and R. Weissleder, “Real-time high dynamic range laser scanning microscopy,” Nat. Commun. 7, 11077 (2016).
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Wells, D.

W. C. Wallace, O. Ghafur, C. Khurmi, S. Sainadh U, J. E. Calvert, D. E. Laban, M. G. Pullen, K. Bartschat, A. N. Grum-Grzhimailo, D. Wells, H. M. Quiney, X. M. Tong, I. V. Litvinyuk, R. T. Sang, and D. Kielpinski, “Precise and accurate measurements of strong-field photoionization and a transferable laser intensity calibration standard,” Phys. Rev. Lett. 117(5), 053001 (2016).
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Wereley, S.

Wiggins, T. A.

Wright, E. M.

J. Arlt, K. Dholakia, J. Soneson, and E. M. Wright, “Optical dipole traps and atomic waveguides based on Bessel light beams,” Phys. Rev. A 63(6), 063602 (2001).
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Xie, C.

C. Xie, V. Jukna, C. Milián, R. Giust, I. Ouadghiri-Idrissi, T. Itina, J. M. Dudley, A. Couairon, and F. Courvoisier, “Tubular filamentation for laser material processing,” Sci. Rep. 5, 8914 (2015).
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Yao, B.

M. Lei and B. Yao, “Characteristics of beam profile of Gaussian beam passing through an axicon,” Opt. Commun. 239(4-6), 367–372 (2004).
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Yu, X.

X. Yu, C. A. Trallero-Herrero, and S. Lei, “Materials processing with superposed Bessel beams,” Appl. Surf. Sci. 360, 833–839 (2016).
[Crossref]

Zemánek, P.

Zhang, B.

M. C. Chen, P. Arpin, T. Popmintchev, M. Gerrity, B. Zhang, M. Seaberg, D. Popmintchev, M. M. Murnane, and H. C. Kapteyn, “Bright, coherent, ultrafast soft X-ray harmonics spanning the water window from a tabletop light source,” Phys. Rev. Lett. 105(17), 173901 (2010).
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Zhang, J.

F. Courvoisier, J. Zhang, M. K. Bhuyan, M. Jacquot, and J. M. Dudley, “Applications of femtosecond Bessel beams to laser ablation,” Appl. Phys., A Mater. Sci. Process. 112(1), 29–34 (2013).
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Zhao, Y.

Zhou, B.

S. Akturk, B. Zhou, B. Pasquiou, M. Franco, and A. Mysyrowicz, “Intensity distribution around the focal regions of real axicons,” Opt. Commun. 281(17), 4240–4244 (2008).
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S. Zigo, A. T. Le, P. Timilsina, and C. T. Herrero, “Ionization study of isomeric molecules in strong-field laser pulses,” Sci. Rep. (to appear).

Appl. Opt. (1)

Appl. Phys. Lett. (3)

M. Nisoli, S. De Silvestri, and O. Svelto, “Generation of high energy 10 fs pulses by a new pulse compression technique,” Appl. Phys. Lett. 68(20), 2793–2795 (1996).
[Crossref]

L. Van Dao, K. B. Dinh, and P. Hannaford, “Generation of extreme ultraviolet radiation with a Bessel-Gaussian beam,” Appl. Phys. Lett. 95(13), 131114 (2009).
[Crossref]

X. Tsampoula, V. Garcés-Chávez, M. Comrie, D. J. Stevenson, B. Agate, C. T. A. Brown, F. Gunn-Moore, and K. Dholakia, “Femtosecond cellular transfection using a nondiffracting light beam,” Appl. Phys. Lett. 91(5), 053902 (2007).
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Appl. Phys., A Mater. Sci. Process. (1)

F. Courvoisier, J. Zhang, M. K. Bhuyan, M. Jacquot, and J. M. Dudley, “Applications of femtosecond Bessel beams to laser ablation,” Appl. Phys., A Mater. Sci. Process. 112(1), 29–34 (2013).
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Appl. Surf. Sci. (1)

X. Yu, C. A. Trallero-Herrero, and S. Lei, “Materials processing with superposed Bessel beams,” Appl. Surf. Sci. 360, 833–839 (2016).
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Bell Syst. Tech. J. (1)

E. A. J. Marcatili and R. A. Schmeltzer, “Hollow metallic and dielectric waveguides for long distance optical transmission and lasers,” Bell Syst. Tech. J. 43(4), 1783–1809 (1964).
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J. Opt. Soc. Am. A (1)

J. Opt. Soc. Am. B (1)

J. Phys. At. Mol. Opt. Phys. (3)

M. B. Gaarde, J. L. Tate, and K. J. Schafer, “Macroscopic aspects of attosecond pulse generation,” J. Phys. At. Mol. Opt. Phys. 41(13), 132001 (2008).
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C. Trallero-Herrero, C. Jin, B. E. Schmidt, A. D. Shiner, J.-C. Kieffer, P. B. Corkum, D. M. Villeneuve, C. D. Lin, F. Légaré, and A. T. Le, “Generation of broad XUV continuous high harmonic spectra and isolated attosecond pulses with intense mid-infrared lasers,” J. Phys. At. Mol. Opt. Phys. 45(1), 011001 (2012).
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H. Dachraoui, T. Auguste, A. Helmstedt, P. Bartz, M. Michelswirth, N. Mueller, W. Pfeiffer, P. Salieres, and U. Heinzmann, “Interplay between absorption, dispersion and refraction in high-order harmonic generation,” J. Phys. At. Mol. Opt. Phys. 42(17), 175402 (2009).
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Laser Phys. (1)

P. Saari and H. Sõnajalg, “Pulsed Bessel beams,” Laser Phys. 7, 32–39 (1997).

Nat. Commun. (1)

C. Vinegoni, C. Leon Swisher, P. Fumene Feruglio, R. J. Giedt, D. L. Rousso, S. Stapleton, and R. Weissleder, “Real-time high dynamic range laser scanning microscopy,” Nat. Commun. 7, 11077 (2016).
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Nature (1)

D. G. Grier, “A revolution in optical manipulation,” Nature 424(6950), 810–816 (2003).
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Opt. Commun. (5)

J. Arlt, V. Garces-Chavez, W. Sibbett, and K. Dholakia, “Optical micromanipulation using a Bessel light beam,” Opt. Commun. 197(4-6), 239–245 (2001).
[Crossref]

V. Jarutis, R. Paškauskas, and A. Stabinis, “Focusing of Laguerre-Gaussian beams by axicon,” Opt. Commun. 184(1-4), 105–112 (2000).
[Crossref]

M. Lei and B. Yao, “Characteristics of beam profile of Gaussian beam passing through an axicon,” Opt. Commun. 239(4-6), 367–372 (2004).
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S. Akturk, B. Zhou, B. Pasquiou, M. Franco, and A. Mysyrowicz, “Intensity distribution around the focal regions of real axicons,” Opt. Commun. 281(17), 4240–4244 (2008).
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P. Balcou, P. Salieres, A. L’Huillier, and M. Lewenstein, “Generalized phase-matching conditions for high harmonics: the role of field-gradient forces,” Phys. Rev. A 55(4), 3204–3210 (1997).
[Crossref]

J. Arlt, K. Dholakia, J. Soneson, and E. M. Wright, “Optical dipole traps and atomic waveguides based on Bessel light beams,” Phys. Rev. A 63(6), 063602 (2001).
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Phys. Rev. A: At. Mol. Opt. Phys. (3)

D. Faccio, E. Rubino, A. Lotti, A. Couairon, A. Dubietis, G. Tamošauskas, D. G. Papazoglou, and S. Tzortzakis, “Nonlinear light-matter interaction with femtosecond high-angle Bessel beams,” Phys. Rev. A: At. Mol. Opt. Phys. 85(3), 033829 (2012).
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[Crossref] [PubMed]

M. C. Chen, P. Arpin, T. Popmintchev, M. Gerrity, B. Zhang, M. Seaberg, D. Popmintchev, M. M. Murnane, and H. C. Kapteyn, “Bright, coherent, ultrafast soft X-ray harmonics spanning the water window from a tabletop light source,” Phys. Rev. Lett. 105(17), 173901 (2010).
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[Crossref] [PubMed]

A. D. Shiner, C. Trallero-Herrero, N. Kajumba, H. C. Bandulet, D. Comtois, F. Légaré, M. Giguère, J. C. Kieffer, P. B. Corkum, and D. M. Villeneuve, “Wavelength scaling of high harmonic generation efficiency,” Phys. Rev. Lett. 103(7), 073902 (2009).
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Proc. Natl. Acad. Sci. U.S.A. (1)

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Figures (6)

Fig. 1
Fig. 1

Experimental setup.

Fig. 2
Fig. 2

An example showing HDR image processing. Images (a)-(c) are obtained using three ND filters with the femtosecond laser. Combined high dynamic range (HDR) images are shown in (d) with linear intensity (I) and in (e) with square root I. 80% of the total energy falls within the red circle in (d) with a radius of R0.8.

Fig. 3
Fig. 3

(a, b) Bessel-like beams observed at various distances (Z) from the axicon for (a) HeNe and (b) femtosecond (FS) lasers. (c, d) Longitudinal profiles of laser beams for (c) HeNe and (d) femtosecond lasers. Intensities are normalized to the peak values in the two cases.

Fig. 4
Fig. 4

Longitudinal sections of femtosecond Bessel-like beams generated at various lens-axicon distances (L). The focal length of the lens is 200 mm. Red dashed lines mark the boundary of 80%-energy beam size (R0.8).

Fig. 5
Fig. 5

The 80%-energy beam size measured for three focal lengths (f) and various distances from the axicon (L). Axicon is at Z = 0.

Fig. 6
Fig. 6

Beam profiles for (a) original and (b) center-blocked input beam. Red curves are intensity profiles averaged around the cores (X = 0, average width 30 µm) normalized to the maximum intensity. f = 200 mm, L = 10 mm.

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