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首页> 外文期刊>IEEE Journal of Quantum Electronics >Thermal Management in 2.3- $mu{hbox {m}}$ Semiconductor Disk Lasers: A Finite Element Analysis
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Thermal Management in 2.3- $mu{hbox {m}}$ Semiconductor Disk Lasers: A Finite Element Analysis

机译:2.3- $ mu {hbox {m}} $半导体盘激光器的热管理:有限元分析

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摘要

Finite element analysis is used to study heat flow in a 2.3-mum semiconductor disk laser (or vertical-external-cavity surface-emitting laser) based on GalnAsSb-AlGaAsSb. An intra-cavity diamond heatspreader is shown to significantly improve thermal management-and hence power scalability-in this laser compared to the substrate thinning approach typically used in semiconductor disk lasers operating around 1 mum. The parameters affecting the performance of an intracavity heat-spreader are studied in the context of a 2.3-mum semiconductor disk laser: the thermal impedance at the interface between the semiconductor gain material and the heatspreader is found to be much more important than the mounting arrangements for the gain-heatspreader composite; power scaling with pump spot radius-increasing the pump power at constant pump intensity-is found to be intrinsically limited; and the pump wavelength is predicted to have less affect on thermal management than might be expected. Direct pumping of the quantum wells is found to significantly reduce the temperature rise per unit pump power.
机译:有限元分析用于研究基于GalnAsSb-AlGaAsSb的2.3微米半导体圆盘激光器(或垂直外部腔表面发射激光器)中的热流。与通常在工作于1毫米左右的半导体磁盘激光器中使用的基板变薄方法相比,腔内金刚石散热器显示出可显着改善该激光器的热管理,从而改善功率可扩展性。在一个2.3微米的半导体圆盘激光器中研究了影响腔内散热器性能的参数:发现半导体增益材料和散热器之间的界面处的热阻比安装装置重要得多用于增益散热器复合材料;发现在一定的泵浦强度下随泵浦点半径增加功率的功率定标本质上受到限制;预计泵浦波长对热管理的影响比预期的要小。发现直接泵浦量子阱可显着降低单位泵浦功率的温度升高。

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