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首先对Cr4+:YAG晶体的结构和频谱背景进行了研究,并对Cr4+:YAG晶体在辐射光谱作用下产生的热效应作了理论上的分析,提出了Cr4+:YAG晶体在固体激光器中的应用前景.

参考文献

[1] Angert N B, Borodin N I, Garmash V M, et al. Lasing due to impurity color centers in yttrium alminum garnet crystals at wavelengths in the range 1.35~1.45 μm [J]. Sov. J. Quantum Electron. 1988, 18: 73-74.
[2] Eilers H, et al. Performance of a Cr:YAG laser [J]. IEEE J. Quantum Electron. 1993, 29(9): 2508-2512.
[3] Sennaroglu A, Pollock C R. Efficient continuous-wave chromium-doped YAG laser [J]. J. Opt. Soc. Am. B, 1995,12(5): 930-937.
[4] Collings B C, Bergman K. True fundamental solitons in a passively mode-locked short-cavity Cr4+:YAG laser [J].Opt. Lett., 1997, 22(14): 1098-1100.
[5] Ripin D J, Chudoba C, Gopinath J T, et al. Generation of 20-fs-pulses by a prismless Cr4+:YAG laser [J]. Opt.Lett., 2002, 27(1): 61-63.
[6] Schibli T R, Kremp T, Morgner U, et al. Cotinuous-wave operation and Q-switched mode locking of Cr4+:YAG microchip lasers [J]. Opt. Lett., 2001, 26(12): 941-943.
[7] Alcock A J, Sorach P, Hnatovsky K. Broadly tunable continuous-wave diode-pumped Cr4+:YAG laser [J]. Opt.Comm., 2003, 215: 153-157.
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