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Fresnel rhombs as achromatic phase shifters for infrared nulling interferometry

机译:菲涅耳菱形作为红外消零干涉法的消色差移相器

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摘要

We propose a new family of achromatic phase shifters for infrared nulling interferometry. These key optical components can be seen as optimized Fresnel rhombs, using the total internal reflection phenomenon, modulated or not. The total internal reflection indeed comes with a phase shift between the polarization components of the incident light. We propose a solution to implement this vectorial phase shift between interferometer arms to provide the destructive interference process needed to disentangle highly contrasted objects from one another. We also show that, modulating the index transition at the total internal reflection interface allows compensating for the intrinsic material dispersion in order to make the subsequent phase shift achromatic over especially broad bands. The modulation can be induced by a thin film of a well-chosen material or a subwavelength grating whose structural parameters are thoroughly optimized. We present results from theoretical simulations together with preliminary fabrication outcomes and measurements for a prototype in Zinc Selenide.
机译:我们提出了用于消零红外干涉术的新的消色差移相器系列。这些关键的光学组件可以被视为优化的菲涅耳菱形,使用了全内反射现象,无论是否调制。实际上,全内反射伴随着入射光的偏振分量之间的相移。我们提出一种解决方案,以在干涉仪支臂之间实现这种矢量相移,以提供将高对比度物体彼此分开所需的破坏性干涉过程。我们还表明,调制全内反射界面处的折射率跃迁可以补偿本征材料色散,以使随后的相移在特别宽的频带上变为消色差。调制可以通过精心选择的材料薄膜或亚波长光栅进行,其结构参数得到了充分优化。我们介绍了理论模拟的结果,以及硒化锌原型的初步制造结果和测量结果。

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