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Generation of high powers from diode pumped chromium-3+ doped colquiriites.

机译:二极管泵浦的掺铬3+铬锰矿产生高功率。

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摘要

There is considerable interest in the area of laser diode pumped solid-state lasers. Diode pumped solid-state lasers (DPSSL) operating at high average power levels are attractive light sources for various applications such as materials processing, laser radar, and fundamental physics experiments. These laser systems have become more commonplace because of their efficiency, reliability, compactness, low relative cost, and long operational lifetimes. Induced thermal effects in the solid-state laser medium hinder the scaling of DPSSL's to higher average power levels. Therefore a deep insight into the thermo-mechanical properties of the solid state laser is crucial in order to ensure a laser design which is optimized for high average power operation.; A comprehensive study of the factors that contribute to thermal loading of the colquiriites was performed. A three-dimensional thermal model has been created to determine the temperature rise inside the laser crystal. This new model calculates the temperature distribution by considering quantum defect, upconversion, and upper-state lifetime quenching as heating sources. The thermally induced lensing in end pumped Cr{dollar}sp{lcub}3+{rcub}{dollar} doped LiSrAlF{dollar}sb6{dollar}, LiSrGaF{dollar}sb6{dollar}, LiSrCaAlF{dollar}sb6{dollar}, and LiCaAlF{dollar}sb6{dollar} were experimentally measured.; Several diode pumped colquiriite laser systems were assembled to quantitatively observe and identify thermally induced effects. Significant differences in each of the colquiriite materials were observed. These differences are explained by the differences in the thermo-mechanical and thermo-optical properties of the material and are explained by the theoretical thermal model.
机译:在激光二极管泵浦固态激光器领域中存在相当大的兴趣。在高平均功率水平下工作的二极管泵浦固态激光器(DPSSL)是各种应用(例如材料加工,激光雷达和基础物理实验)中有吸引力的光源。这些激光系统因其效率,可靠性,紧凑性,较低的相对成本和较长的使用寿命而变得越来越普遍。固态激光介质中的感应热效应阻碍了DPSSL缩放到更高的平均功率水平。因此,深入了解固态激光器的热机械性能至关重要,以确保针对高平均功率操作进行优化的激光器设计。进行了对引起红铝矿热负荷的因素的综合研究。已经创建了三维热模型来确定激光晶体内部的温度升高。这个新模型通过考虑量子缺陷,上转换和上位寿命淬火作为热源来计算温度分布。末端泵浦的Cr {dollar} sp {lcub} 3+ {rcub} {dollar}掺杂LiSrAlF {dollar} sb6 {dollar},LiSrGaF {dollar} sb6 {dollar},LiSrCaAlF {dollar} sb6 {dollar}的热致透镜;和LiCaAlF {dollar} sb6 {dollar}进行了实验测量。组装了几个二极管泵浦的红土激光系统,以定量观察和识别热诱导效应。观察到每种红云母材料具有显着差异。这些差异可以通过材料的热机械和热光学特性的差异来解释,也可以通过理论热模型来解释。

著录项

  • 作者

    Eichenholz, Jason Matthew.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Physics Optics.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;无线电电子学、电信技术;
  • 关键词

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