Chinese Journal of Lasers, Volume. 24, Issue 8, 673(1997)
Theoretical Study on the Single frequency Operation of Diode pumped Intracavity Frequency doubled Lasers
[1] [1] M. Oka, S. Kubota. Stable intracavity doubling of orthogona llinearlly polarized modes in diode pumped Nd:YAG laser. Opt. Lett., 1988, 13(4): 805~807
[2] [2] G. E. James, E. M. Harrell. Intermittency and chaosin in tracavity doubled lasers. Phys. Rev., 1990, A41(5): 2778~2790
[3] [3] H. Nagai, M. Kume, I. Ohta et al.. Low-noise operation of a diode-pumped intracavity-doubled Nd:YAG laser using a Brewster plate. IEEE J. Quant. Electr., 1992, QE-28(4): 1164~1168
[4] [4] D. Draegert. Efficient single-longitudinal-mode Nd:YAG laser. IEEE J. Quant. Electr., 1972, QE-8(1): 235~239
[5] [5] B. Zhou, T. J. Kane, G. J. Dixon. Efficiency, frequency-stable laser-diode-pumped Nd:YAG laser. Opt. Lett., 1985, 10(2): 62~64
[6] [6] R. Scheps, J. Myers. Asingle frequency Nd:YAG ring laser pumped by laser diode. IEEE J. Quant. Electr., 1990, QE-26(3): 413~416
[7] [7] J. Harrison, A. Finch, J. H. Flint et al.. Broad-band rapid tuning of a single-frequency diode-pumped neodymium laser. IEEE J. Quant. Electr., 1992, QE-28(4): 1123~1130
[8] [8] G. J. Kintz, T. Beer. Single-frequency operation in solid-state laser materials with short absorption depths. IEEE J. Quant. Electr., 1990, QE-26(9): 1457~1459
[9] [9] T. Y. Fan, R. L. Byer. Diode-laser-pumped solid-state lasers. IEEE J. Quant. Electr., 1988, QE-24(6): 895~912
[11] [11] J. D. Bierlein, H. Vanherzeele. Potassium titanyl phosphate properties and new applications. J. Opt. Soc. Am., 1989, B6(3): 622~633
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese]. Theoretical Study on the Single frequency Operation of Diode pumped Intracavity Frequency doubled Lasers[J]. Chinese Journal of Lasers, 1997, 24(8): 673