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Far-infrared/submillimeter astronomical interferometry with spaceborne tether formations

机译:星空系绳形成的远红外/亚毫米天文干涉仪

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摘要

Through the continuing development of improved detectors and detector arrays, far-infrared/submillimeter astronomical space missions have had enormous successes in recent years. Despite these advances, the diffraction-limited angular resolving power has remained virtually constant. The advent of telescopes with apertures of several meters will improve this capability, but will still leave image resolution many orders of magnitude poorer than in most other spectral ranges. Here we point out that the only foreseeable way to improve image quality to rival that of modem optical telescopes will be with interferometers whose light collectors are connected by tethers. After making the scientific case for high spatial resolution far-infrared/submillimeter imaging and the use of interferometry as the most immediate way of producing results, we discuss recent advances in dynamic analysis and control of tethered formations, and argue that the further development and testing of tethers in space is a first step toward providing improved far-infrared/submillimeter angular resolution and astronomical image quality.
机译:通过不断发展改进的探测器和探测器阵列,近年来,远红外/亚毫米天文太空任务取得了巨大的成功。尽管有这些进步,但衍射极限角分辨力实际上保持不变。孔径为几米的望远镜的出现将提高这种能力,但与大多数其他光谱范围相比,图像分辨率仍然差很多数量级。在这里,我们指出,提高图像质量以与现代光学望远镜相媲美的唯一可预见的方法是使用干涉仪,其光收集器通过系绳连接。在为高空间分辨率的远红外/亚毫米级成像以及使用干涉测量法作为产生结果的最直接方法提供科学依据之后,我们讨论了栓系物动态分析和控制的最新进展,并指出了进一步的开发和测试在太空中使用系绳是迈向提供改进的远红外/亚毫米角度分辨率和天文图像质量的第一步。

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