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在高功率倍频过程中,非线性倍频晶体由于吸收了基波和谐波的功率,造成倍频晶体内温度的变化,破坏了晶体原来的相位匹配条件,从而导致频率变换效率降低、输出谐波功率不稳定等问题,对于高功率高重复频率激光器系统尤其严重.根据热传导方程分析了晶体内部的热分布,利用非线性晶体的折射率方程分析了非线性倍频晶体温度变化时,其相位匹配、允许参量以及光波走离角的变化情况,为实现高功率倍频激光奠定了理论基础.

参考文献

[1] Okada M, Ieiri S. Influence of self-induced thermal effects on phase matching in nonlinear optical crystals [J].IEEE J. Quant. Electron., 1971, 7(12): 560-563.
[2] Barnes N P, Eckhardt R C, Gettemy D J, et al. Heating effect in second harmonic generation [C] ∥Presented at the Laser Isotope Separation Information Exchange Meeting, Albuquerque, N. M., 1977.
[3] Maslov V A, et al. Nonlinear absorption in KTP crystal [J]. Quantum. Electronics, 1997, 27(4): 356-359.
[4] Mann G, Weber H. Measurement of nonlinear absorption coefficients of KTP crystals in green spectral range [J].Laser Physics, 1999, 9(1): 426-429.
[5] Mann G, Seidel S, Weber H. Influence of mechanical stress on the conversion efficiency of KTP and LBO [C] ∥Proc. SPIE, 1999, 3823: 289-296.
[6] Barnes N P, Williams-Byrd J A. Average power effects in parametric oscillators and amplifiers [J]. J. Opt. Soc.Am. B, 1986, 12(1): 124-131.
[7] Hon D T, et al. Beam shaping to suppress phase mismatch in high power second-harmonic generation [J]. IEEE J. Quantum Electron., 1980, QE-16(12): 1356-1364.
[8] Eimerl D. High average power harmonic generation [J]. IEEE J. Quantum Electron., 1987, QE-23(5): 575-592.
[9] Wu S, Blake G A, Sun S, et al. A multicrystal harmonic generator that compensates for thermally induced phase mismatch [J]. Opt. Commun., 2000, 173: 371-376.
[10] Yap Y K, Kitatochi K D N, Mori Y, et al. Alleviation of thermally induced phase mismatch in CsLiB6 O10 crystal by means of temperature-profile compensation [J]. Opt. Lett., 1998, 23(13): 1016-1018.
[11] Yao Jianquan. Nonlinear Optical Frequency Conversion and Tunable Laser Technology [M]. Beijing: Science Press, 1995. 59-62.
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