Abstract

A continuous-wave erbium-doped ytterbium-free fiber laser generates a record-breaking pump-power-limited output power of 656 W at 1601  nm when cladding pumped by 0.98 μm diode lasers. The slope efficiency was 35.6% with respect to launched pump power, and the beam quality factor (M2) was 10.5. This M2 value excludes a fraction 25% of the power that emerged from the cladding, which we attribute in part to mode coupling between the 146 μm core and 700 μm inner cladding. Whereas these parameters are adequate for in-band tandem pumping of Tm-doped fiber lasers, we predict that an output power of over 1 kW is possible through pumping with state-of-the-art 0.98 μm diode lasers, even with a smaller core that allows for improved beam quality.

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References

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Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
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J. D. Minelly, R. I. Laming, J. E. Townsend, W. L. Barnes, E. R. Taylor, K. P. Jedrzejewski, and D. N. Payne, in Optical Fiber Communications Conference (Optical Society of America, 1992), pp. 32.

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H. Lin, Y. Feng, P. Barus, J. K. Sahu, and J. Nilsson, in Advanced Solid State Lasers (Optical Society of America, 2017), paper ATh4A.2.

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J. D. Minelly, Z. J. Chen, R. I. Laming, and J. E. Caplen, in 21st European Conference on Optical Communication (1995), p. 917.

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Codemard, C. A.

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Cormier, E.

L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
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E. Delevaque, T. Georges, M. Monerie, P. Lamouler, and J.-F. Bayon, IEEE Photon. Technol. Lett. 5, 73 (1993).
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A. J. W. Ellison, J. E. Dickinson, D. E. Goforth, D. L. Harris, J. T. Kohli, J. D. Minelly, B. N. Samson, J. K. Trenteman, and M. J. Yadlowsky, in Optical Amplifiers and their Applications (1999), p. 51.

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Dubinskii, M.

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Ellison, A. J. W.

A. J. W. Ellison, J. E. Dickinson, D. E. Goforth, D. L. Harris, J. T. Kohli, J. D. Minelly, B. N. Samson, J. K. Trenteman, and M. J. Yadlowsky, in Optical Amplifiers and their Applications (1999), p. 51.

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H. Lin, Y. Feng, P. Barus, J. K. Sahu, and J. Nilsson, in Advanced Solid State Lasers (Optical Society of America, 2017), paper ATh4A.2.

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Fevrier, S.

L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
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M. A. Jebali, J. Maran, S. LaRochelle, S. Chatigny, M. Lapointe, and E. Gagnon, in Conference on Lasers and Electro-Optics (Optical Society of America, 2012), paper JTh1I.

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A. J. W. Ellison, J. E. Dickinson, D. E. Goforth, D. L. Harris, J. T. Kohli, J. D. Minelly, B. N. Samson, J. K. Trenteman, and M. J. Yadlowsky, in Optical Amplifiers and their Applications (1999), p. 51.

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L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
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Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
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Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
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Huignard, J. P.

Isineev, A. A.

V. P. Gapontsev, S. M. Matisin, A. A. Isineev, and V. B. Kravchenko, Opt. Laser Technol. 14, 189 (1982).
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Jansen, F.

Jauregui, C.

Jebali, M. A.

M. A. Jebali, J. N. Maran, and S. LaRochelle, Opt. Lett. 39, 3974 (2014).
[Crossref]

M. A. Jebali, J. Maran, S. LaRochelle, S. Chatigny, M. Lapointe, and E. Gagnon, in Conference on Lasers and Electro-Optics (Optical Society of America, 2012), paper JTh1I.

Jedrzejewski, K. P.

J. D. Minelly, R. I. Laming, J. E. Townsend, W. L. Barnes, E. R. Taylor, K. P. Jedrzejewski, and D. N. Payne, in Optical Fiber Communications Conference (Optical Society of America, 1992), pp. 32.

Jeong, Y.

Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
[Crossref]

Kohli, J. T.

A. J. W. Ellison, J. E. Dickinson, D. E. Goforth, D. L. Harris, J. T. Kohli, J. D. Minelly, B. N. Samson, J. K. Trenteman, and M. J. Yadlowsky, in Optical Amplifiers and their Applications (1999), p. 51.

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L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
[Crossref]

Kravchenko, V. B.

V. P. Gapontsev, S. M. Matisin, A. A. Isineev, and V. B. Kravchenko, Opt. Laser Technol. 14, 189 (1982).
[Crossref]

L’hermite, J.

L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
[Crossref]

Lallier, E.

Laming, R. I.

J. D. Minelly, Z. J. Chen, R. I. Laming, and J. E. Caplen, in 21st European Conference on Optical Communication (1995), p. 917.

J. D. Minelly, R. I. Laming, J. E. Townsend, W. L. Barnes, E. R. Taylor, K. P. Jedrzejewski, and D. N. Payne, in Optical Fiber Communications Conference (Optical Society of America, 1992), pp. 32.

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M. A. Jebali, J. Maran, S. LaRochelle, S. Chatigny, M. Lapointe, and E. Gagnon, in Conference on Lasers and Electro-Optics (Optical Society of America, 2012), paper JTh1I.

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M. A. Jebali, J. N. Maran, and S. LaRochelle, Opt. Lett. 39, 3974 (2014).
[Crossref]

M. A. Jebali, J. Maran, S. LaRochelle, S. Chatigny, M. Lapointe, and E. Gagnon, in Conference on Lasers and Electro-Optics (Optical Society of America, 2012), paper JTh1I.

Le Boudec, P.

F. Sanchez, P. Le Boudec, P. L. Francois, and G. Stephan, Phys. Rev. A 48, 2220 (1993).
[Crossref]

P. Le Boudec, M. Le Flohic, P. L. Francois, F. Sanchez, and G. Stephan, Opt. Quantum Electron. 25, 501 (1993).
[Crossref]

Le Flohic, M.

P. Le Boudec, M. Le Flohic, P. L. Francois, F. Sanchez, and G. Stephan, Opt. Quantum Electron. 25, 501 (1993).
[Crossref]

Likhachev, M. E.

L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
[Crossref]

Limpert, J.

Lin, H.

H. Lin, Y. Feng, P. Barus, J. K. Sahu, and J. Nilsson, in Advanced Solid State Lasers (Optical Society of America, 2017), paper ATh4A.2.

Lovelady, M.

Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
[Crossref]

Maran, J.

M. A. Jebali, J. Maran, S. LaRochelle, S. Chatigny, M. Lapointe, and E. Gagnon, in Conference on Lasers and Electro-Optics (Optical Society of America, 2012), paper JTh1I.

Maran, J. N.

Matisin, S. M.

V. P. Gapontsev, S. M. Matisin, A. A. Isineev, and V. B. Kravchenko, Opt. Laser Technol. 14, 189 (1982).
[Crossref]

Medvedkov, O. I.

L. V. Kotov, M. E. Likhachev, M. M. Bubnov, O. I. Medvedkov, M. V. Yashkov, A. N. Guryanov, S. Fevrier, J. L’hermite, and E. Cormier, Proc. SPIE 8961, 89610X (2014).
[Crossref]

Minelly, J. D.

G. G. Vienne, J. E. Caplen, L. Dong, J. D. Minelly, J. Nilsson, and D. N. Payne, J. Lightwave Technol. 16, 1990 (1998).
[Crossref]

J. D. Minelly, R. I. Laming, J. E. Townsend, W. L. Barnes, E. R. Taylor, K. P. Jedrzejewski, and D. N. Payne, in Optical Fiber Communications Conference (Optical Society of America, 1992), pp. 32.

J. D. Minelly, Z. J. Chen, R. I. Laming, and J. E. Caplen, in 21st European Conference on Optical Communication (1995), p. 917.

A. J. W. Ellison, J. E. Dickinson, D. E. Goforth, D. L. Harris, J. T. Kohli, J. D. Minelly, B. N. Samson, J. K. Trenteman, and M. J. Yadlowsky, in Optical Amplifiers and their Applications (1999), p. 51.

Monerie, M.

E. Delevaque, T. Georges, M. Monerie, P. Lamouler, and J.-F. Bayon, IEEE Photon. Technol. Lett. 5, 73 (1993).
[Crossref]

Nicholson, J. W.

V. R. Supradeepa, J. W. Nicholson, and K. Feder, in Conference on Lasers and Electro-Optics (Optical Society of America, 2012), paper CM2N.8.

Nielsen, C. K.

C. K. Nielsen, E. Riis, A. Petersson, and J. Broeng, Proc. SPIE 5335, 180 (2004).
[Crossref]

Nilsson, J.

D. J. Richardson, J. Nilsson, and W. A. Clarkson, J. Opt. Soc. Am. B 27, B63 (2010).
[Crossref]

Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
[Crossref]

G. G. Vienne, J. E. Caplen, L. Dong, J. D. Minelly, J. Nilsson, and D. N. Payne, J. Lightwave Technol. 16, 1990 (1998).
[Crossref]

H. Lin, Y. Feng, P. Barus, J. K. Sahu, and J. Nilsson, in Advanced Solid State Lasers (Optical Society of America, 2017), paper ATh4A.2.

Otto, H.

Payne, D. N.

Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
[Crossref]

G. G. Vienne, J. E. Caplen, L. Dong, J. D. Minelly, J. Nilsson, and D. N. Payne, J. Lightwave Technol. 16, 1990 (1998).
[Crossref]

J. D. Minelly, R. I. Laming, J. E. Townsend, W. L. Barnes, E. R. Taylor, K. P. Jedrzejewski, and D. N. Payne, in Optical Fiber Communications Conference (Optical Society of America, 1992), pp. 32.

Petersson, A.

C. K. Nielsen, E. Riis, A. Petersson, and J. Broeng, Proc. SPIE 5335, 180 (2004).
[Crossref]

Piper, A.

Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
[Crossref]

Richardson, D. J.

Riis, E.

C. K. Nielsen, E. Riis, A. Petersson, and J. Broeng, Proc. SPIE 5335, 180 (2004).
[Crossref]

Robertson, D. C.

A. Berk, L. S. Bernstein, and D. C. Robertson, “MODTRAN: A Moderate Resolution Model For LOWTRAN 7,” (AFGL, Hanscomb AFB, 1989), p. 42.

Sahu, J. K.

Y. Jeong, S. Yoo, C. A. Codemard, J. Nilsson, J. K. Sahu, D. N. Payne, R. Horley, P. W. Turner, L. Hickey, A. Harker, M. Lovelady, and A. Piper, IEEE J. Sel. Top. Quantum Electron. 13, 573 (2007).
[Crossref]

H. Lin, Y. Feng, P. Barus, J. K. Sahu, and J. Nilsson, in Advanced Solid State Lasers (Optical Society of America, 2017), paper ATh4A.2.

Samson, B. N.

A. J. W. Ellison, J. E. Dickinson, D. E. Goforth, D. L. Harris, J. T. Kohli, J. D. Minelly, B. N. Samson, J. K. Trenteman, and M. J. Yadlowsky, in Optical Amplifiers and their Applications (1999), p. 51.

Sanchez, F.

F. Sanchez, P. Le Boudec, P. L. Francois, and G. Stephan, Phys. Rev. A 48, 2220 (1993).
[Crossref]

P. Le Boudec, M. Le Flohic, P. L. Francois, F. Sanchez, and G. Stephan, Opt. Quantum Electron. 25, 501 (1993).
[Crossref]

Schmidt, O.

Schreiber, T.

Steinhausser, B.

Stephan, G.

P. Le Boudec, M. Le Flohic, P. L. Francois, F. Sanchez, and G. Stephan, Opt. Quantum Electron. 25, 501 (1993).
[Crossref]

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Figures (5)

Fig. 1.
Fig. 1. Refractive index of the Er:Al-doped preform. Inset: fiber image.
Fig. 2.
Fig. 2. Schematic of the Er-doped fiber laser. HR-P, high reflectivity for the pump; HR-S, high reflectivity for the signal.
Fig. 3.
Fig. 3. (a) Laser output power versus launched pump power. (b) Optical spectrum at 656 W output power; resolution, 1 nm.
Fig. 4.
Fig. 4. Time-trace of potentially damaging self-pulsing. Inset: sub-pulse.
Fig. 5.
Fig. 5. Beam radius of the output signal in orthogonal directions at maximum power measured with a scanning slit. Inset: output signal beam profile as reconstructed from two scans in orthogonal directions.

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