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Geometrical and physical optics analysis for mm-wavelength refractor telescopes designed to map the cosmic microwave background

机译:用于映射宇宙微波背景的MM波长折射器望远镜的几何和物理光学分析

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We present a compact two-lens high-density polyethylene (HDPE) f/1.6 refractor design that is capable of supporting a 28-deg diffraction-limited field of view at 1-mm wavelengths and contrast it to a similar two-lens refractor using silicon lenses. We compare the optical properties of these two systems as predicted by both geometrical and physical optics. The presented analysis suggests that by relaxing telecentricity requirements, a plastic two-lens refractor system can be made to have a surprisingly large field of view. Furthermore, this HDPE system is found to perform comparably to a similar silicon system across a wide field of view and wavelengths up to 1 mm. We show that for both telescope designs, cold stop spillover changes significantly across the field of view in a way that is somewhat inconsistent with Gaussian beam formalism and simple f-number scaling. We present results that highlight beam ellipticity dependence on both pixel location and pixel aperture size-an effect that is challenging to reproduce in standard geometrical optics. We show that a silicon refractor design suffers from larger cross-polarization compared to the HDPE design. Our results address the limitations of relying solely on geometrical optics to assess relative performance of two optical systems. We discuss implications for future refractor designs. (C) 2020 Optical Society of America
机译:我们介绍了一种紧凑的双镜头高密度聚乙烯(HDPE)F / 1.6折射器设计,其能够在1mm波长下支撑28°衍射限制的视野,并将其与类似的双透镜折射器进行对比使用硅镜片。我们将这两个系统的光学特性与几何和物理光学器件预测的这两个系统进行了比较。本分析表明,通过放松电信度要求,可以使塑料两透镜折射器系统具有令人惊讶的大视野。此外,发现该HDPE系统在跨越视场和高达1mm的波长的宽视场上进行相当于类似的硅系统执行。我们表明,对于望远镜设计,对于与高斯梁形式主义和简单的F数缩放的方式有点不一致的方式,对望远镜设计来说,冷却溢出溢出显着变化。我们提供了对像素位置和像素光圈尺寸的突出显示光束椭圆形依赖性的结果 - 在标准几何光学中具有挑战性的效果。与HDPE设计相比,我们表明硅折射器设计具有较大的交叉极化。我们的结果解决了仅依赖于几何光学依赖性的局限性,以评估两个光学系统的相对性能。我们讨论对未来折射器设计的影响。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共16页
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