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Focal plane optics in far-infrared and submillimeter astronomy

机译:远红外和亚毫米天文学中的焦平面光学器件

摘要

The construction of airborne observatories, high mountain-top observatories, and space observatories designed especially for infrared and submillimeter astronomy has opened fields of research requiring new optical techniques. A typical far-IR photometric study involves measurement of a continuum spectrum in several passbands between approx 30 microns and 1000 microns and diffraction-limited mapping of the source. At these wavelengths, diffraction effects strongly influence the design of the field optics systems which couple the incoming flux to the radiation sensors (cold bolometers). The Airy diffraction disk for a typical telescope at submillimeter wavelengths approx 100 microns-1000 microns is many millimeters in diameter; the size of the field stop must be comparable. The dilute radiation at the stop is fed through a Winston nonimaging concentrator to a small cavity containing the bolometer. The purpose of this paper is to review the principles and techniques of infrared field optics systems, including spectral filters, concentrators, cavities, and bolometers (as optical elements), with emphasis on photometric systems for wavelengths longer than 60 microns.
机译:专门为红外和亚毫米天文学设计的机载天文台,高山天文台和太空天文台的建设打开了需要新光学技术的研究领域。典型的远红外光度研究涉及在大约30微米至1000微米之间的几个通带中测量连续光谱,并对源进行衍射极限成像。在这些波长下,衍射效应强烈影响将入射通量耦合到辐射传感器(冷辐射热计)的现场光学系统的设计。对于典型的望远镜,在亚毫米波长(大约100微米至1000微米)处,艾里衍射盘的直径为几毫米;磁场挡块的尺寸必须可比。停止处的稀释辐射通过Winston非成像聚光器馈入装有辐射热计的小腔中。本文的目的是回顾红外场光学系统的原理和技术,包括光谱滤光片,聚光器,腔体和辐射热计(作为光学元件),重点是波长大于60微米的光度学系统。

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    Hildebrand R. H.;

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  • 年度 1985
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