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Optical requirements and modeling of coupling devices for future far- infrared space missions

机译:未来远红外太空飞行任务的光学要求和耦合设备建模

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The next generation of space missions targeting far-infrared bands will require large-format arrays of extremely low-noise detectors. The development of Transition Edge Sensors (TES) array technology seems to be a viable solution for future mm-wave to Far-Infrared (FIR) space applications where low noise and high sensitivity is required. In this paper we concentrate on a key element for a high sensitivity TES detector array, that of the optical coupling between the incoming electromagnetic field and the phonon system of the suspended membrane. An intermediate solution between free space coupling and a single moded horn is where over-moded light pipes are used to concentrate energy onto multi-moded absorbers. We present a comparison of modeling techniques to analyze the optical efficiency of such light pipes and their interaction with the front end optics and detector cavity.
机译:面向远红外频段的下一代太空飞行将需要大型阵列的超低噪声探测器。对于需要低噪声和高灵敏度的未来毫米波到远红外(FIR)空间应用,过渡边缘传感器(TES)阵列技术的发展似乎是可行的解决方案。在本文中,我们专注于高灵敏度TES检测器阵列的关键元件,即入射电磁场与悬浮膜声子系统之间的光学耦合。自由空间耦合和单模喇叭之间的中间解决方案是使用过模制的光导管将能量集中到多模制吸收器上。我们提出了一种建模技术的比较,以分析此类光导管的光学效率及其与前端光学器件和探测器腔体的相互作用。

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