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Bolometric kinetic inductance detector technology for sub-millimeter radiometric imaging

机译:亚毫米辐射成像的辐射动力学电感检测器技术

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Radiometric sub-millimeter imaging is a candidate technology especially in security screening applications utilizing the property of radiation in the band of 0.2 .1-.0 THz to penetrate through dielectric substances such as clothing. The challenge of the passive technology is the fact that the irradiance corresponding to the blackbody radiation is very weak in this spectral band: about two orders of magnitude below that of the infrared band. Therefore the role of the detector technology is of ultimate importance to achieve sufficient sensitivity. In this paper we present results related to our technology relying on superconducting kinetic inductance detectors operating in a thermal (bolometric) mode. The detector technology is motivated by the fact that it is naturally suitable for scalable multiplexed readout systems, and operates with relatively simple cryogenics. We will review the basic concepts of the detectors, and provide experimental figures of merit. Furthermore, we will discuss the issues related to the scale-up of our detector technology into large 2D focal plane arrays.
机译:辐射亚毫米成像是候选技术,特别是在安全筛选应用中,利用0.2 .1-.0 THz的带中的辐射性能,穿过诸如衣服的介电物质。被动技术的挑战是对应于黑体辐射的辐照度在该光谱带中非常弱:大约在红外频带的大约下降的数量级。因此,探测器技术的作用具有最终的重要性,以实现足够的敏感性。在本文中,我们呈现与我们的技术相关的结果,依赖于以热(弓旋)模式运行的超导动力学探测器。探测器技术的激励是它自然适用于可伸缩的多路复用读数系统,并以相对简单的低温操作操作。我们将审查探测器的基本概念,并提供实验数字的优点。此外,我们将讨论与我们的探测器技术扩大到大型2D焦平面阵列相关的问题。

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