多层消色差波片的模拟退火光学设计

Jun Ma, Jing-Sheng Wang, C. Denker, Haimin Wang
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引用次数: 22

摘要

我们采用蒙特卡罗方法-模拟退火算法-进行多层消色差波片的设计。我们提出了三层、六层和十层消色差波片的解决方案。在波长范围为1000 ~ 1800 nm的六层波片和十层波片中,最佳延迟设置分别为89°51′39”±0°33′37”和89°54′46”±0°22′4”。通过数值实验研究了多层波片的偏振特性。与之前提出的三层消色差波片不同,新的六层和十层消色差波片的快速轴保持在固定角度,与波长无关。讨论了多层消色差波片作为通用移相器和双折射滤光片在大熊太阳天文台红外成像磁振仪系统中的两种应用。我们还检验了一种测量波片延迟的实验方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical Design of Multilayer Achromatic Waveplate by Simulated Annealing Algorithm
We applied a Monte Carlo method — simulated annealing algorithm — to carry out the design of multilayer achromatic waveplate. We present solutions for three-, six- and ten-layer achromatic waveplates. The optimized retardance settings are found to be 89°51'39''±0°33'37'' and 89°54'46''±0°22'4'' for the six- and ten-layer waveplates, respectively, for a wavelength range from 1000 nm to 1800 nm. The polarimetric properties of multilayer waveplates are investigated based on several numerical experiments. In contrast to previously proposed three-layer achromatic waveplate, the fast axes of the new six- and ten-layer achromatic waveplate remain at fixed angles, independent of the wavelength. Two applications of multilayer achromatic waveplate are discussed, the general-purpose phase shifter and the birefringent filter in the Infrared Imaging Magnetograph (IRIM) system of the Big Bear Solar Observatory (BBSO). We also checked an experimental method to measure the retardance of waveplates.
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