Abstract

A mid-infrared supercontinuum extending up to 5.4 μm is generated in a low-loss fluoroindate fiber. It is pumped with an erbium-doped fluoride fiber amplifier seeded with 400 ps pulses at 2.75 μm. Both fibers are fusion spliced to increase the robustness and long-term stability of the system. With more than 82% of the total power beyond 3 μm, this approach is promising for efficient mid-IR light generation.

© 2016 Optical Society of America

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C. R. Petersen, P. M. Moselund, C. Petersen, U. Møller, and O. Bang, Opt. Express 24, 749 (2016).
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C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
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Moulton, P.

P. Moselund, C. Petersen, L. Leick, J. Seidelin Dam, P. Tidemand-Lichtenberg, C. Pedersen, and P. Moulton, in Advanced Solid-State Lasers Congress (Optical Society of America, 2013), paper JTh5A.9.

Neelakandan, M.

Ohishi, Y.

T. Cheng, T. H. Tuan, L. Liu, X. Xue, M. Matsumoto, H. Tezuka, T. Suzuki, and Y. Ohishi, Appl. Phys. Express 9, 022502 (2016).
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P. M. Becker, A. A. Olsson, and J. R. Simpson, Erbium-Doped Fiber Amplifiers: Fundamentals and Technology (Academic, 1999).

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P. Moselund, C. Petersen, L. Leick, J. Seidelin Dam, P. Tidemand-Lichtenberg, C. Pedersen, and P. Moulton, in Advanced Solid-State Lasers Congress (Optical Society of America, 2013), paper JTh5A.9.

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P. Moselund, C. Petersen, L. Leick, J. Seidelin Dam, P. Tidemand-Lichtenberg, C. Pedersen, and P. Moulton, in Advanced Solid-State Lasers Congress (Optical Society of America, 2013), paper JTh5A.9.

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C. R. Petersen, P. M. Moselund, C. Petersen, U. Møller, and O. Bang, Opt. Express 24, 749 (2016).
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C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
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Piché, M.

Ramsay, J.

C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
[Crossref]

J. Ramsay, S. Dupont, M. Johansen, L. Rishøj, K. Rottwitt, P. M. Moselund, and S. R. Keiding, Opt. Express 21, 10764 (2013).
[Crossref]

S. Dupont, P. M. Moselund, L. Leick, J. Ramsay, and S. R. Keiding, J. Opt. Soc. Am. B 30, 2570 (2013).
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Rishøj, L.

Rottwitt, K.

Saad, M.

Salem, R.

Schleijpen, R.

H. H. P. T. Bekman, J. C. van den Heuvel, F. J. M. van Putten, and R. Schleijpen, Proc. SPIE 5615, 27 (2004).
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Schmidt, B. E.

Seddon, A.

C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
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Seidelin Dam, J.

P. Moselund, C. Petersen, L. Leick, J. Seidelin Dam, P. Tidemand-Lichtenberg, C. Pedersen, and P. Moulton, in Advanced Solid-State Lasers Congress (Optical Society of America, 2013), paper JTh5A.9.

Shi, H.

Simpson, J. R.

P. M. Becker, A. A. Olsson, and J. R. Simpson, Erbium-Doped Fiber Amplifiers: Fundamentals and Technology (Academic, 1999).

Sujecki, S.

C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
[Crossref]

Suzuki, T.

T. Cheng, T. H. Tuan, L. Liu, X. Xue, M. Matsumoto, H. Tezuka, T. Suzuki, and Y. Ohishi, Appl. Phys. Express 9, 022502 (2016).
[Crossref]

Swiderski, J.

J. Swiderski, F. Théberge, M. Michalska, P. Mathieu, and D. Vincent, Laser Phys. Lett. 11, 015106 (2014).
[Crossref]

Tan, F.

Tang, Z.

C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
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Terry, J. F. L.

Tezuka, H.

T. Cheng, T. H. Tuan, L. Liu, X. Xue, M. Matsumoto, H. Tezuka, T. Suzuki, and Y. Ohishi, Appl. Phys. Express 9, 022502 (2016).
[Crossref]

Théberge, F.

J. Swiderski, F. Théberge, M. Michalska, P. Mathieu, and D. Vincent, Laser Phys. Lett. 11, 015106 (2014).
[Crossref]

F. Théberge, J.-F. Daigle, D. Vincent, P. Mathieu, J. Fortin, B. E. Schmidt, N. Thiré, and F. Légaré, Opt. Lett. 38, 4683 (2013).
[Crossref]

Thiré, N.

Tidemand-Lichtenberg, P.

P. Moselund, C. Petersen, L. Leick, J. Seidelin Dam, P. Tidemand-Lichtenberg, C. Pedersen, and P. Moulton, in Advanced Solid-State Lasers Congress (Optical Society of America, 2013), paper JTh5A.9.

Tuan, T. H.

T. Cheng, T. H. Tuan, L. Liu, X. Xue, M. Matsumoto, H. Tezuka, T. Suzuki, and Y. Ohishi, Appl. Phys. Express 9, 022502 (2016).
[Crossref]

Vallée, R.

van den Heuvel, J. C.

H. H. P. T. Bekman, J. C. van den Heuvel, F. J. M. van Putten, and R. Schleijpen, Proc. SPIE 5615, 27 (2004).
[Crossref]

van Putten, F. J. M.

H. H. P. T. Bekman, J. C. van den Heuvel, F. J. M. van Putten, and R. Schleijpen, Proc. SPIE 5615, 27 (2004).
[Crossref]

Vincent, D.

J. Swiderski, F. Théberge, M. Michalska, P. Mathieu, and D. Vincent, Laser Phys. Lett. 11, 015106 (2014).
[Crossref]

F. Théberge, J.-F. Daigle, D. Vincent, P. Mathieu, J. Fortin, B. E. Schmidt, N. Thiré, and F. Légaré, Opt. Lett. 38, 4683 (2013).
[Crossref]

Walsh, B. M.

B. M. Walsh, H. R. Lee, and N. P. Barnes, J. Lumin. 169, Part B, 400 (2016).
[Crossref]

Wang, P.

Xue, X.

T. Cheng, T. H. Tuan, L. Liu, X. Xue, M. Matsumoto, H. Tezuka, T. Suzuki, and Y. Ohishi, Appl. Phys. Express 9, 022502 (2016).
[Crossref]

Zhidkova, I. A.

M. N. Brekhovskikh, L. V. Moiseeva, S. K. Batygov, I. A. Zhidkova, and V. A. Fedorov, Inorg. Mater. 51, 1348 (2015).
[Crossref]

Zhou, B.

C. R. Petersen, U. Møller, I. Kubat, B. Zhou, S. Dupont, J. Ramsay, T. Benson, S. Sujecki, N. Abdel-Moneim, Z. Tang, D. Furniss, A. Seddon, and O. Bang, Nat. Photonics 8, 830 (2014).
[Crossref]

Appl. Opt. (1)

Appl. Phys. Express (1)

T. Cheng, T. H. Tuan, L. Liu, X. Xue, M. Matsumoto, H. Tezuka, T. Suzuki, and Y. Ohishi, Appl. Phys. Express 9, 022502 (2016).
[Crossref]

Inorg. Mater. (1)

M. N. Brekhovskikh, L. V. Moiseeva, S. K. Batygov, I. A. Zhidkova, and V. A. Fedorov, Inorg. Mater. 51, 1348 (2015).
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J. Lumin. (1)

B. M. Walsh, H. R. Lee, and N. P. Barnes, J. Lumin. 169, Part B, 400 (2016).
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J. Opt. Soc. Am. B (2)

Laser Phys. Lett. (1)

J. Swiderski, F. Théberge, M. Michalska, P. Mathieu, and D. Vincent, Laser Phys. Lett. 11, 015106 (2014).
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Meas. Sci. Technol. (1)

A. E. Klingbeil, J. B. Jeffries, and R. K. Hanson, Meas. Sci. Technol. 17, 1950 (2006).
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Figures (5)

Fig. 1.
Fig. 1.

(a) Experimental setup of the InF 3 -based SC source pumped by an Er 3 + : ZrF 4 fiber amplifier. (b) Image of the fusion splice between the Er 3 + -doped ZrF 4 fiber and the InF 3 fiber (L1, L2, coupling lenses; DM, dichroic mirror).

Fig. 2.
Fig. 2.

Attenuation spectrum of the 13.5/100 μm InF 3 fiber compared to a standard 6.5/125 μm ZrF 4 fiber from Le Verre Fluoré.

Fig. 3.
Fig. 3.

Spectrum of the 1.25 m Er 3 + : ZrF 4 amplifier at different launched pump powers from 0 to 978 mW.

Fig. 4.
Fig. 4.

Spectrum after propagation in (a) 1 m and (b) 15 m InF 3 fibers at different launched pump powers from 77 to 978 mW.

Fig. 5.
Fig. 5.

Average output power as a function of the launched pump power and InF 3 fiber length. The black dots represent the experimental data points.

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