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Experimental and numerical investigation of thermal effects in end-pumped Cr/sup 4+/:forsterite lasers near room temperature

机译:室温下端泵浦Cr / sup 4 + /:镁橄榄石激光器热效应的实验和数值研究

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摘要

The results of a study which employs both experimental and theoretical methods to investigate the role of thermal effects in room-temperature Cr/sup 4+/:forsterite lasers are presented. A novel model was developed to calculate the incident threshold pump power required to attain oscillation by taking into account absorption saturation and pump-induced thermal loading in the gain medium. Experimentally, the incident threshold pump power was measured as a function of the crystal boundary temperature for three Cr/sup 4+/:forsterite laser crystals with different small-signal differential absorption coefficients /spl alpha//sub p0/ and/or cross-sectional areas. Excellent agreement was obtained between theory and experiment for values of the stimulated emission cross section comparable to those from previously reported data. The model was then used to numerically determine the optimum value of /spl alpha//sub p0/ which minimizes the incident threshold pump power in room-temperature Cr/sup 4+/:forsterite lasers. At a crystal boundary temperature of 15/spl deg/C, the optimum value of /spl alpha//sub p0/ was determined to be 0.64 cm/sup -1/ for a 2-cm-long Cr/sup 4+/:forsterite crystal, corresponding to an unsaturated absorption of 72%. The use of crystals with an optimum absorption coefficient should lead to the realization of highly efficient CW Cr/sup 4+/:forsterite lasers at room temperature.
机译:介绍了采用实验和理论方法研究热效应在室温Cr / sup 4 + /:镁橄榄石激光器中的作用的研究结果。通过考虑吸收饱和和增益介质中泵引起的热负载,开发了一种新颖的模型来计算达到振荡所需的入射阈值泵浦功率。实验上,针对三个Cr / sup 4 + /:镁橄榄石激光晶体(具有不同的小信号微分吸收系数/ spl alpha // sub p0 /和/或正交),测量了入射阈值泵浦功率与晶界温度的函数关系。截面积。理论和实验之间的受激发射横截面值可与先前报道的数据相媲美,取得了极好的一致性。然后将该模型用于数值确定/ spl alpha // sub p0 /的最佳值,该最优值可最小化室温Cr / sup 4 + /:镁橄榄石激光器中的入射阈值泵浦功率。在15 / spl deg / C的晶体边界温度下,对于2 cm长的Cr / sup 4 + /,/ spl alpha // sub p0 /的最佳值确定为0.64 cm / sup -1 /:镁橄榄石晶体,对应的不饱和吸收率为72%。使用具有最佳吸收系数的晶体应该可以在室温下实现高效的CW Cr / sup 4 + /:镁橄榄石激光器。

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