Terahertz antennas and related optical components

G. Chattopadhyay
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Abstract

Millimeter- and submillimeter-wave imaging systems for astronomy, planetary, and Earth science applications are increasingly moving towards large focal plane arrays. The relatively long wavelengths together with focal ratios encountered imply mm-sized pixels, and when one considers arrays with a hundred to thousands of pixels, we have to deal with optical elements of quite substantial size. In many applications, geometry makes lenses far more attractive than mirrors, and since cryogenic detectors are invariably employed, ground-based systems as well as testing of space-based systems require vacuum windows 10s of cm in diameter. Especially at shorter wavelengths, very low loss materials are required since the thickness of lenses and windows is substantial, reaching several cm. Crystal quartz can be used in some cases, but available diameters are limited to 12 cm. The anisotropy of the material can be harmful in many situations as well.
太赫兹天线及相关光学元件
用于天文、行星和地球科学应用的毫米波和亚毫米波成像系统正日益向大型焦平面阵列发展。相对较长的波长和焦比意味着毫米大小的像素,当我们考虑具有100到数千像素的阵列时,我们必须处理相当大尺寸的光学元件。在许多应用中,几何结构使得透镜远比镜子更有吸引力,而且由于总是使用低温探测器,地面系统以及空间系统的测试都需要直径10厘米的真空窗。特别是在波长较短的情况下,由于透镜和窗口的厚度很大,可以达到几厘米,因此需要非常低损耗的材料。晶体石英可以在某些情况下使用,但可用的直径限制在12厘米。材料的各向异性在许多情况下也是有害的。
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