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首页> 外文期刊>Applied optics >Three-dimensional calculation of high-power, annularly distributed, laser-beam-induced thermal effects on reflectors and windows
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Three-dimensional calculation of high-power, annularly distributed, laser-beam-induced thermal effects on reflectors and windows

机译:大功率,环形分布,激光束引起的反射器和窗户热效应的三维计算

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摘要

Based on the three-dimensional transient heat conduction equation and the elastic stress-strain equation, the temperature rise, distortion, and equivalent stress distributions of a high-reflectivity silicon reflector and a white bijou window irradiated by a high-power sloped annularly distributed laser beam are simulated using a three-dimensional finite element model (FEM). The effects of laser intensity, output duration, beam obscure ratio, and laser intensity spatial gradient on the results are especially investigated. The effects of mirror and window thermal distortion on laser beam phase aberrations are also evaluated. This noncylindrosymmetric three-dimensional FEM can be used to evaluate high-power, high-energy, laser beam-induced thermal effects on optical components.
机译:基于三维瞬态热传导方程和弹性应力-应变方程,由高功率倾斜环形分布激光辐照的高反射率硅反射镜和白色bijou窗口的温度升高,变形和等效应力分布使用三维有限元模型(FEM)模拟梁。特别研究了激光强度,输出持续时间,光束模糊比和激光强度空间梯度对结果的影响。还评估了镜面和窗口热变形对激光束相位像差的影响。这种非圆柱对称的三维有限元方法可用于评估高功率,高能量,激光束对光学组件产生的热效应。

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