首页> 外文会议>Conference on Optomechanical Design and Engineering 2001 Aug 2-3, 2001, San Diego, USA >Optical Performance of Bimetallic Mirrors Under Thermal Environment
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Optical Performance of Bimetallic Mirrors Under Thermal Environment

机译:热环境下双金属镜的光学性能

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Evaluation of the optical performances of bimetallic mirrors with various substrate shapes was conducted using the finite element analysis program, SDRC-IDEAS. In these analyses, two different plating materials, nickel and aluminum were considered for an aluminum and a beryllium mirror substrate. Thermal environment used in this study is a unit thermal soak (temperature difference). Surface errors, individual aberration terms, such as piston, tilts, focus and other aberrations were obtained by the program PCFRINGE. It was found that the optical performances of bimetallic mirrors depend on the plating material, plating thickness, and the mirror substrate shapes materials. The optimum plating thickness combinations were determined based on plating material and mirror substrate with temperature difference. The results were compared with the optical surface errors and the corrected surface errors. The results indicate that there does not exist a definitive common rule for the optimum, but a detailed analysis such as presented herein is generally needed to design bimetallic mirrors in a thermal environment.
机译:使用有限元分析程序SDRC-IDEAS对具有各种基板形状的双金属镜的光学性能进行了评估。在这些分析中,铝和铍镜面基板考虑了两种不同的电镀材料,镍和铝。本研究中使用的热环境是单位均热(温度差)。通过PCFRINGE程序可以获得表面误差,各个像差项,例如活塞,倾斜,聚焦和其他像差。已经发现,双金属镜的光学性能取决于镀覆材料,镀覆厚度和镜面基板成形材料。最佳的镀层厚度组合是根据镀层材料和带温度差的镜面基板确定的。将结果与光学表面误差和校正的表面误差进行比较。结果表明,没有最佳的确定通用规则,但是在热环境中设计双金属镜通常需要诸如本文所述的详细分析。

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