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Comparative experimental investigation of thermal loading in continuous-wave Cr4+: forsterite lasers

机译:连续波Cr4 +:镁橄榄石激光器中热负荷的对比实验研究

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Results of a detailed experimental study aimed at reducing the thermal loading effects in room-temperature continuous-wave Cr4+:forsterite lasers are presented. By using a Nd:YAG pump laser operated at 1.06 mu m, the effect of the absorption coefficient and crystal cross-sectional area on the power performance of three crystals was compared between 12 and 36 degrees C. Experiments indicated that a low differential absorption coefficient significantly reduces the pump-induced thermal effects and cavity losses that would otherwise give rise to inefficient operation and increased temperature sensitivity. In particular, a Cr4+:forsterite crystal with an absorption coefficient of 0.57 cm(-1) yielded as much as 900 mW of output power at 1.26 mu m and a crystal temperature of 15 degrees C with an incident pump power of only 7.6 W. To the author's knowledge, the demonstrated slope efficiency of 30% represents the highest continuous-wave power performance reported to date from this laser system at elevated temperatures. (C) 1998 Optical Society of America. [References: 17]
机译:提出了旨在减少室温连续波Cr4 +:镁橄榄石激光器中热负荷效应的详细实验研究的结果。通过使用工作在1.06μm的Nd:YAG泵浦激光器,在12至36摄氏度之间比较了吸收系数和晶体截面积对三种晶体的功率性能的影响。实验表明,低差分吸收系数显着降低了泵引起的热效应和空腔损失,否则将导致效率低下的操作和温度敏感性的提高。尤其是,吸收系数为0.57 cm(-1)的Cr4 +:镁橄榄石晶体在1.26μm处产生高达900 mW的输出功率,晶体温度为15摄氏度,入射泵浦功率仅为7.6 W.据作者所知,所证明的30%的斜率效率代表了该激光系统在高温下迄今为止报道的最高连续波功率性能。 (C)1998年美国眼镜学会。 [参考:17]

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