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Polarization compensation of Fresnel aberrations in telescopes

机译:望远镜中菲涅耳像差的偏振补偿

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摘要

Large aperture space telescopes are built with low F#'s to accommodate the mechanical constraints of launch vehicles and to reduce resonance frequencies of the on-orbit system. Inherent with these low F# is Fresnel polarization which effects image quality. We present the design and modeling of a nano-structure consisting of birefringent layers. Analysis shows a device that functions across a 400nm bandwidth tunable from 300nm to 1200nm. This Fresnel compensator device has a cross leakage of less than 0.001 retardance.
机译:大口径太空望远镜是用低F#望远镜制造的,以适应运载火箭的机械约束并降低在轨系统的共振频率。这些低F#的固有特征是影响图像质量的菲涅耳偏振。我们介绍了由双折射层组成的纳米结构的设计和建模。分析显示,该器件可在400nm带宽(可从300nm调整至1200nm)中工作。该菲涅耳补偿器装置具有小于0.001延迟的交叉泄漏。

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