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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Thermal focusing effect in solid-state microchip lasers connected directly with vertical-cavity surface-emitting laser diodes
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Thermal focusing effect in solid-state microchip lasers connected directly with vertical-cavity surface-emitting laser diodes

机译:直接与垂直腔面发射激光二极管连接的固态微芯片激光器的热聚焦效应

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摘要

In this paper, we model and analyze thermal focusing effect in the microchip lasers pumped by vertical-cavity surface-emitting lasers (VCSELs) for a special pump scheme, in which the microchip is axially connected with the VCSEL pump source without a gap between them to form a sort of ultra-compact monolithic micro-lasers. Thus, the thermal effects are related to twofold heating processes in the microchip. One is the common pump beam heating. The other is the heat flux diffusion from VCSEL to microchip through the contact interface between both, the latter leads to different thermo-optic characteristics from that generated only by the pump beam heating in the microchip. The temperature-, the stress- and the expansion-related phase variations and thus the thermal focusing properties of the microchip regarding the twofold heating processes are calculated and discussed for various pump power densities and temperatures of the VCSEL using analytical models. The results show that both heating processes in such a pump configuration can produce comparable thermal effects to each other. The influence of the heat transfer from the VCSEL to the microchip laser performance is discussed as well.
机译:在本文中,我们针对特殊的泵浦方案对垂直腔表面发射激光器(VCSEL)泵浦的微芯片激光器中的热聚焦效应进行建模和分析,其中微芯片与VCSEL泵浦源轴向连接,并且两者之间没有间隙形成一种超紧凑的单片微激光器。因此,热效应与微芯片中的双重加热过程有关。一种是常见的泵浦光束加热。另一个是通过两者之间的接触界面从VCSEL到微芯片的热通量扩散,后者导致与仅由微芯片中的泵浦光束加热产生的热光特性不同的热光特性。使用分析模型针对VCSEL的各种泵浦功率密度和温度,计算并讨论了与温度,应力和膨胀相关的相位变化,从而计算了关于二次加热过程的微芯片的热聚焦特性。结果表明,在这种泵配置中,两种加热过程都可以产生彼此相当的热效应。还讨论了从VCSEL传热到微芯片激光器性能的影响。

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