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Design of superachromatic quarter-wave retarders in a broad spectral range

机译:在宽光谱范围内设计超消色差四分之一波长延迟器

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摘要

A superachromatic quarter-wave retarder using an arbitrary number of waveplates in a broadband spectral range has been proposed. Their design is based on the optimization of a merit function, the achromatism degree (AcD), which represents a global behavior metric for the retardation. By means of this technique, the thickness and azimuth of each waveplate is determined. The achromatism degree is a measure of the distance between the overall retardation and a target retardation weighted by the spectrum of the incident light. We report on a particular case where all waveplates are made of quartz. As application examples, the design of a quarter-wave retarder using two, three, and four waveplates in the spectral ranges of 500-700 nm and 400-1000 nm was studied. The numerical results show that for these ranges, the best designs obtained present a maximum difference of 0.013 degrees and 0.010 degrees with respect to the target retardation, respectively. In addition, an analysis of their achromatic stability is presented. These results can be applied in the aerospace industry, spectroscopic ellipsometry, and spectrogoniometry, among others.
机译:已经提出了在宽带光谱范围内使用任意数量的波片的超消色差四分之一波长延迟器。他们的设计基于优值函数消色差度(AcD)的优化,消色差度(AcD)表示延迟的全局行为度量。通过这种技术,可以确定每个波片的厚度和方位角。消色差度是总延迟与目标延迟之间的距离的量度,该延迟由入射光的光谱加权。我们报告了所有波片均由石英制成的特殊情况。作为应用示例,研究了在500-700 nm和400-1000 nm光谱范围内使用两个,三个和四个波片的四分之一波长延迟器的设计。数值结果表明,在这些范围内,获得的最佳设计相对于目标延迟分别具有0.013度和0.010度的最大差异。另外,对它们的消色差稳定性进行了分析。这些结果可以应用于航空航天工业,椭圆偏振光谱法和分光光度法等。

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