Page 383 - High Power Laser Handbook
P. 383
352 So l i d - S t at e La s e r s Ultrafast Lasers in Thin-Disk Geometry 353
53. Kärtner, F. X., and Keller, U., “Stabilization of Soliton-Like Pulses with a Slow
Saturable Absorber,” Opt. Lett., 20: 16–18, 1995.
54. Kärtner, F. X., Jung, I. D., and Keller, U., “Soliton Mode-Locking with Saturable
Absorbers,” IEEE J. Sel. Top. Quant., 2: 540–556, 1996.
55. Jung, I. D., Kärtner, F. X., Brovelli, L. R., Kamp, M., and Keller, U., “Experimental
Verification of Soliton Modelocking Using Only a Slow Saturable Absorber,”
Opt. Lett., 20: 1892–1894, 1995.
56. New, G. H. C., “Pulse Evolution in Mode-Locked Quasi-Continuous Lasers,”
IEEE J. Quantum Electron., 10: 115–124, 1974.
57. Killi, A., Zawischa, I., Sutter, D., Kleinbauer, J., Schad, S., Neuhaus, J.,
and Schmitz, C., “Current Status and Development Trends of Disk Laser
Technology” (art. no. 68710L), Conference on Solid State Lasers XVII, eds. W. A.
Clarkson, N. H. Hodgson, and R. K. Shori, San Jose, CA: SPIE-Int. Soc. Optical
Engineering, L8710–L8710, 2008.
58. Neuhaus, J., Bauer, D., Kleinbauer, J., Killi, A., Weiler, S., Sutter, D. H., and
Dekorsy, T., “Pulse Energies Exceeding 20 mJ Directly from a Femtosecond
Yb:YAG Oscillator,” Proceedings of the Ultrafast Phenomena XVI, eds.
P. B. Corkum, S. D. Silvestri, K. A. Nelson, E. Riedle, and R. W. Schoenlein,
Heidelberg, Germany: Springer, 2008.
59. Neuhaus, J., Kleinbauer, J., Killi, A., Weiler, S., Sutter, D., and Dekorsy, T.,
“Passively Mode-Locked Yb:YAG Thin-Disk Laser with Pulse Energies Exceeding
13 mJ by Use of an Active Multipass Geometry,” Opt. Lett., 33: 726–728, 2008.
60. Marchese, S. V., Baer, C. R. E., Engqvist, A. G., Hashimoto, S., Maas, D. J. H.
C., Golling, M., Südmeyer, T., and Keller, U., “Femtosecond Thin Disk Laser
Oscillator with Pulse Energy Beyond the 10-Microjoule Level,” Opt. Express,
16: 6397–6407, 2008.
61. Marchese, S. V., Südmeyer, T., Golling, M., Grange, R., and Keller, U., “Pulse
Energy Scaling to 5 mJ from a Femtosecond Thin Disk Laser,” Opt. Lett., 31:
2728–2730, 2006.
62. Brunner, F., Südmeyer, T., Innerhofer, E., Paschotta, R., Morier-Genoud, F., Gao,
J., Contag, K., et al., “240-fs Pulses with 22-W Average Power from a Mode-
Locked Thin-Disk Yb:KY(WO ) Laser,” Opt. Lett., 27: 1162–1164, 2002.
4 2
63. Innerhofer, E., Südmeyer, T., Brunner, F., Häring, R., Aschwanden,
A., Paschotta, R., Keller, U., et al., “60 W Average Power in 810-fs Pulses from
a Thin-Disk Yb:YAG Laser,” Opt. Lett., 28: 367–369, 2003.
64. Aus der Au, J., Spühler, G. J., Südmeyer, T., Paschotta, R., Hövel, R., Moser,
M., Erhard, S., et al., “16.2 W Average Power from a Diode-Pumped
Femtosecond Yb:YAG Thin Disk Laser,” Opt. Lett., 25: 859–861, 2000.
65. Marchese, S. V., Baer, C. R. E., Peters, R., Kränkel, C., Engqvist, A. G., Golling,
M., Maas, D. J. H. C., et al., “Efficient Femtosecond High Power Yb:Lu O Thin
2
3
Disk Laser,” Opt. Express, 15: 16966–16971, 2007.
66. Baer, C. R. E., Kränkel, C., Heckl, O. H., Golling, M., Südmeyer, T., Peters,
R., Petermann, K., et al., “227-fs Pulses from a Mode-Locked Yb:LuScO Thin
3
Disk Laser,” Opt. Express, 17: 10725–10730, 2009.
67. Baer, C. R. E., Kränkel, C., Saraceno, C. J., Heckl, O. H., Golling, M., Südmeyer,
T., Peters, R., et al., “Femtosecond Yb:Lu O Thin Disk Laser with 63 W of
3
2
Average Power,” Opt. Lett., 34: 2823–2825, 2009.
68. Rautiainen, J., Korpijärvi, V.-M., Puustinen, J., Guina, M., and Okhotnikov,
O. G., “Passively Mode-Locked GaInNAs Disk Laser Operating at 1220 nm,”
Opt. Express, 16: 2008.
69. Wilcox, K. G., Mihoubi, Z., Daniell, G. J., Elsmere, S., Quarterman, A., Farrer,
I., Ritchie, D. A., and Tropper, A., “Ultrafast Optical Stark Mode-Locked
Semiconductor Laser,” Opt. Lett., 33: 2797–2799, 2008.
70. Garnache, A., Hoogland, S., Tropper, A. C., Sagnes, I., Saint-Girons, G., and
Roberts, J. S., “Sub-500-fs Soliton Pulse in a Passively Mode-Locked Broadband
Surface-Emitting Laser with 100-mW average power,” Appl. Phys. Lett., 80:
3892–3894, 2002.
71. Hoogland, S., Paldus, B., Garnache, A., Weingarten, K. J., Grange, R., Haiml,
M., Paschotta, R., et al., “Picosecond Pulse Generation with a 1.5 mM Passively