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Integrated NIS electron-tunnelling refrigerator/superconducting bolometer

机译:集成式NIS电子隧道制冷机/超导辐射热计

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摘要

We describe progress in the development of a close-packed array of bolometers designed for use in photometric applications at millimeter wavelengths from ground-based telescopes. Each bolometer in the array will use a proximity-effect Transition Edge Sensor (TES) sensing element and each will have integrated Normal-Insulator-Superconductor (NIS) refrigerators to cool the bolometer below the thermal reservoir temperature. The NIS refrigerators and acoustic-phonon-mode-isolated bolometers are fabricated on silicon. The radiation absorbing element is mechanically suspended by four legs, whose dimensions are used to control and optimize the thermal conductance of the bolometer. Using the technology developed at NIST, we fabricate NIS refrigerators at the base of each of the suspension legs. The NIS refrigerators remove hot electrons by quantum-mechanical tunneling and are expected to cool the biased (10 pW) bolometers to < 170 mK while the bolometers are inside a pumped 3 He-cooled cryostat operating at similar to 280 mK. This significantly lower temperature at the bolometer allows the detectors to approach background-limited performance despite the simple cryogenic system. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们描述了密排辐射热计阵列的开发进展,该阵列设计用于地面望远镜在毫米波长的光度学应用中使用。阵列中的每个辐射热测量计将使用一个接近效应过渡边缘传感器(TES)感应元件,并且每个传感器都将具有集成的标准绝缘体超导体(NIS)制冷机,以将辐射热测量计冷却到储热库温度以下。 NIS冰箱和声波模式隔离的辐射热计在硅上制造。辐射吸收元件由四个支腿机械悬挂,其尺寸用于控制和优化辐射热测量仪的热导率。使用NIST开发的技术,我们在每个悬架支脚的底部制造NIS冰箱。 NIS制冷机通过量子力学隧穿去除热电子,并有望将偏置的(10 pW)辐射热计冷却至<170 mK,而辐射热计则处于以280 mK运转的3 He冷却低温恒温器中。尽管采用了简单的低温系统,但辐射热计的这一明显较低的温度仍使检测器能够达到背景受限的性能。 (c)2006 Elsevier B.V.保留所有权利。

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