Finite Element Analysis of Thermal Effects in Diode End-Pumped Solid-State Lasers

M. S. El-daher
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引用次数: 10

Abstract

Thermal effects are the main obstacle to getting high power and good beam quality in diode end-pumped solid-state lasers. In this work, a theoretical investigation of thermal effects in single and dual end-pumped solid-state lasers is carried out using finite element analysis (FEA) for a selected number of widely used laser producing materials, namely, Nd:YAG, Yb:YAG, and Nd:KGW. Crystals with different dimensions are also investigated both in single and in dual end-pumped configuration. Finally, the effect of using composite crystals on thermal lensing is investigated. An experiment to measure the thermal focal length for two different crystals was carried out and a comparison with FEA computed focal length of the thermal lens is made. In all cases studied in this work, results show clear effects of thermal lensing with some differences depending on crystal type, pump power, and size.
二极管端泵浦固体激光器热效应的有限元分析
热效应是制约二极管端泵浦固体激光器获得高功率和高光束质量的主要障碍。在本工作中,采用有限元分析(FEA)的方法,对几种广泛使用的激光生产材料,即Nd:YAG, Yb:YAG和Nd:KGW进行了单端和双端泵浦固体激光器热效应的理论研究。不同尺寸的晶体在单端泵浦和双端泵浦结构下也进行了研究。最后,研究了复合晶体对热透镜效应的影响。通过实验测量了两种不同晶体的热焦距,并与有限元计算的热透镜焦距进行了比较。在本研究的所有案例中,结果都显示出明显的热透镜效应,并根据晶体类型、泵浦功率和尺寸的不同而有所不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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