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Thermo-Mechanical and Optical Analysis and Modeling for a Diamond-Cooled Solid-State Nd: YAG Laser

机译:金刚石冷却固态Nd的热机械和光学分析及造型:YAG激光

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In 2000, Textron Systems Corporation (TSC) initiated the development of an advanced diamond cooled solid-state laser concept suitable for ultra compact medium and high-power lasers. The resulting laser configuration is applicable to laser diode pumping and a wide variety of lasing materials. In order to further improve the performance and determine the limitation of this laser concept, the detailed physical understanding of the interface between diamond and YAG disks was identified as a critical issue. Numerical analyses had been conducted for investigating the thermal-mechanical interaction in the interface between the gain medium and the diamond disks when the lasing process is in progress. Following this analyses, a computer model has been developed to simulate the phenomena of light interaction with the active medium. Subsequently, this computer model has been applied to optimize the laser design, in which the performance in terms of efficiency and compactness for a diamond-cooled laser has shown significant improvements. The understanding of the thermo-mechanical/optical issues at the interface, in general, will be beneficial to a variety of solid-state laser design activities.
机译:2000年,Textron Systems Corporation(TSC)启动了适用于超紧凑型和大功率激光器的先进金刚石冷却固态激光概念的开发。由此产生的激光配置适用于激光二极管泵和各种激光材料。为了进一步提高性能并确定激光概念的限制,确定了钻石和YAG磁盘之间接口的详细了解作为关键问题。当激光过程正在进行时,已经进行了数值分析来研究增益介质和金刚石盘之间的界面中的热机械相互作用。在此分析之后,已经开发了一种计算机模型来模拟与活性介质的光相互作用现象。随后,已经应用了该计算机模型来优化激光设计,其中在钻石冷却激光器的效率和紧凑性方面的性能表明了显着的改进。一般来说,了解界面处的热机械/光学问题将有利于各种固态激光设计活动。

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