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Temperature distributions and thermal deformations of mirror substrates in laser resonators

机译:激光谐振器中镜面基板的温度分布和热变形

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摘要

For finite-thickness media with convective surface losses, the three-dimensional temperature distributions and thermal deformations of mirror substrates in laser resonators that are due to absorption of laser light with a Gaussian power-density profile are calculated by use of the well-known Green's function methods. Some expressions and theoretical profiles of the temperature distributions and thermal deformations as functions of the radius and the thickness of a mirror substrate are obtained. The results of the calculations show that the rise in temperature is closely related to the absorption coefficient of the medium as well as to the convective heat-transfer coefficient, that the initial thermal deformations of mirror surfaces increase quickly at the beginning of laser heating and that then the thermal deformations are insensitive to laser heating times. Meanwhile, thermal deformations of a silicon mirror are experimentally demonstrated by use of CO_(2) laser irradiation. The experimental trends of thermal deformations are in agreement with the theoretical profiles.
机译:对于具有对流表面损失的有限厚度介质,通过使用众所周知的格林定律来计算由于吸收高斯功率密度分布的激光而引起的激光谐振器中镜面基板的三维温度分布和热变形。功能方法。得到了温度分布和热变形随镜面半径和厚度变化的一些表达式和理论曲线。计算结果表明,温度升高与介质的吸收系数以及对流传热系数密切相关,镜面的初始热变形在激光加热开始时迅速增加,并且那么热变形对激光加热时间不敏感。同时,通过使用CO_(2)激光辐照实验证明了硅镜的热变形。热变形的实验趋势与理论曲线一致。

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