首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Optical layout analysis of polarization interference imaging spectrometer by Jones calculus in view of both optical throughput and interference fringe visibility
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Optical layout analysis of polarization interference imaging spectrometer by Jones calculus in view of both optical throughput and interference fringe visibility

机译:从光通量和干涉条纹可见度两方面考虑琼斯演算对偏振干涉成像光谱仪的光学布局分析

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摘要

A polarization interference imaging spectrometer based on Savart polariscope was presented. Its optical throughput was analyzed by Jones calculus. The throughput expression was given, and clearly showed that the optical throughput mainly depended on the intensity of incident light, transmissivity, refractive index and the layout of optical system. The simulation and analysis gave the optimum layout in view of both optical throughput and interference fringe visibility, and verified that the layout of our former design was optimum. The simulation showed that a small deviation from the optimum layout influenced interference fringe visibility little for the optimum one, but influenced severely for others, so a small deviation is admissible in the optimum, and this can mitigate the manufacture difficulty. These results pave the way for further research and engineering design.
机译:提出了一种基于Savart偏光镜的偏振干涉成像光谱仪。通过Jones演算分析其光通量。给出了通过量表达式,清楚地表明光通过量主要取决于入射光的强度,透射率,折射率和光学系统的布局。考虑到光通量和干涉条纹可见性,仿真和分析给出了最佳布局,并验证了我们先前设计的布局是最佳的。仿真表明,与最佳布局的较小偏差对最佳条纹的可见性影响不大,而对其他条纹的可见性影响较大,因此,最佳偏差允许较小,这样可以减轻制造难度。这些结果为进一步的研究和工程设计铺平了道路。

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