Page 176 - Handbook of Lasers
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1056.  Capmany, J., Bausá, L. E., Jaque, D., Garc´ia Solé, J., and Kaminskii, A. A., CW end-
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                               pumped Nd :LaBGeO  minilaser  for  self-frequency-doubling,  J.  Lumin.  72-74,  816
                                                 5
                               (1997).
                         1057.  Capmany, J., Bausá, L. E., Jaque, D., Garc´ia Solé, J., and Kaminskii, A. A., Continuous
                                                                                                 3+
                               wave laser radiation at 524 nm from a self-frequency-doubled laser of LaBGeO :Nd ,
                                                                                              5
                               Appl. Phys. Lett. 72, 531 (1998).
                         1058.  Kaminskii, A. A., Bagaev, S. N., Ueda, K., Pavlyuk, A. A., and Musha, M., Frequency self-
                               doubling of the cw 1-mm laser of a ferroelectroic Nd3+: b'-Gd (MoO )  crsytal with laser-
                                                                             2
                                                                                   4 3
                               diode pumping, Quantum Electron. 27, 657 (1997).
                         1059.  Eichler, H. J., Ashkenaasi, D., Jian,  H.,  and  Kaminskii,  A.  A.,  Accentric  disordered
                                  3+
                               Nd :La Ga SiO   crystal.  A  broadband  luminescence  material  with  high  thermal
                                         5
                                      3
                                             14
                               conductivity to generate picosecond laser pulses, Phys. Stat. Sol. (a) 146, 833 (1994).
                         1060.  Otsuka, K., Yamada, T., Nakano, J., Kimura, T., and Saruwatari, M., Lithium neodymium
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                         1061.  Saruwatari, M., Kimura, T., and Otsuka, K., Miniaturized cw LiNdP O  laser pumped
                                                                                       12
                                                                                     4
                               with a semiconductor laser, Appl. Phys. Lett. 29, 291 (1978).
                         1062.  Kubodera, K, Nakano, J., Otsuka, K., and Miyazawa, S., A stab waveguide laser formed of
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                                             4
                                               12
                         1063.  Kubodera, K, and Otsuka, K., Single-transverse-mode LiNdP O 12  slab waveguide laser,
                                                                              4
                               J. Appl. Phys. 50, 653 (1979).
                         1064.  Chinn, S. R. and Hong, H. Y-P., Low-threshold cw LiNdP O 12  laser,  Appl. Phys. Lett.
                                                                             4
                               29, 291 (1978).
                         1065.  Otsuka, K., Kubodera, K., and Nakano, J., Stabilized dual-polarization oscillation in a
                               LiNd La P O  laser, IEEE J. Quantum Electron. QE-13, 398 (1977).
                                       .5 4
                                   .5
                                           12
                         1066.  Kopf, D., Prasad, A., Zhang, G., Moser, A., and Keller, U., Broadly tunable femtosecond
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                         1067.  Kaminskii, A. A., Osiko, V. V., Sarkisov, S. E., Timoshechkin, M. I., Zhekov, E. V., Bohm,
                               J., Reiche, P., and Schulzte, D., Growth, spectroscopic investigations, and some new
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                                                             12
                                                       3
                                                          5
                               (1978).
                         1068.  Rambaldi, P., Moncorgé, R., Wolf, J. P., Pedrini, C. et al., Efficient and stable pulsed laser
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                                                 4
                                                                                         3+
                         1069.  Devor, D. P., Soffer, B. H., and Robinson, M., Stimulated emission from Ho  at 2  mm in
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                                   3
                         1070.  Knowles, D. S. and Jenssen, H. P., Upconversion versus Pr-deactivation for efficient 3 mm
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                         1071.  Eichler, H. J., Findeisen, J., Liu, B., Kaminskii, A. A., Butachin, A. V., and Peuser, P.,
                                                              3+
                               Highly efficient diode-pumped 3-mm Er :BaY F  laser,  EEE J. Sel. Topics Quantum
                                                                    2 8
                               Electron. 13, 90 (1997).
                         1072.  Auzel, F., Kaminskii, A. A., and Meichenin, D., Diode and dye pumped cw  laser  in
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                               BaY F :Er  at 2.7 mm Phys. Stat. Sol. (a) 131, K63 (1992).
                                   2 8
                         1073.  Prokhorov, A. M., Kaminskii, A. A., Osiko, V. V., Timoshechkin, M.I., Zharokov, E. V.
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                         1074.  Kaminskii, A. A. and Uvarova, T. V., Quasi-continuous 3-micron stimulated emission in
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                                            2 8
                         1075.  Thompson, G. A., Krupkin, V., Yogev, A., and Oron, M., Solar-pumped Nd:Cr:GSGG
                               parallel array laser, Opt. Engin. 31, 2644 (1992).
                         1076.  Thompson, G. A., Krupkin, V., Reich, A., and Oron, M., Effects of coolant temperature and
                               pump power on the power output on solar-pumped solid state lasers,  Opt. Engin. 31,
                               2488 (1992).
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