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Performance of SIS photon detectors for superconductive imaging submillimeter-wave camera (SISCAM)

机译:SIS光子探测器对超导成像杂交镜相机(SISCAM)的性能

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High sensitivity submillimeter-wave focal plane array using SIS photon detector is being developed, which we call SISCAM, the superconductive imaging submillimeter-wave camera. In the course of the detector evaluations, we have measured performance of the SIS photon detectors under various operating conditions. Advantages of the SIS photon detectors are explained by the nature of antenna coupled quantum detectors. Their input coupling can be designed to have band-pass characteristics owing to the distributed junction design. This reduces requirements for infrared blocking filters and enhances optical efficiency. The detector performance is evaluated under background loading and they show background limited performance. Measurement at 4 K shows the SIS photon detector operates under shot noise limit of thermal leakage current and its NEP is 1x10~(-14) W/Hz~(0.5), that is better than bolometers at 4.2 K, whereas the same detector has NEP of 10~(-16) W/Hz~(0.5) at 0.3 K. Dynamic range of SIS photon detectors is estimated to be higher than 10~9, which surpass the dynamic range achievable with TES bolometers. Nine-element array of SIS photon detector, SISCAM-9, is developed and their performance is evaluated in a submillimeter-wave telescope. With a development of integrated electronics with GaAs-JFET charge integrating readout circuit, the SIS photon detector will be an ideal imaging array in submillimeter-wave region. Due to its large dynamic range and shot noise limited performance under various operating condition, SIS photon detectors can be used for various astronomical instrumentations as well as for other fields of terahertz technologies.
机译:正在开发使用SIS光子探测器的高灵敏度外镜波焦平面阵列,我们称之为SISCAM,超导成像杂像波相机。在探测器评估过程中,我们在各种操作条件下测量了SIS光子探测器的性能。通过天线耦合量子检测器的性质来解释SIS光子探测器的优点。它们的输入耦合可以设计成由于分布式结设计而具有带通特性。这降低了对红外阻挡滤波器的要求并提高了光学效率。检测器性能在后台装载下进行评估,它们显示背景有限的性能。 4 k的测量表示SIS光子检测器在热漏电流的射击噪声限制下操作,其NEP为1×10〜(-14)w / hz〜(0.5),比4.2 k处的钻头仪更好,而同一探测器具有优于4.2 k,而相同的探测器10〜(-16)W / Hz〜(0.5)的NEP在0.3K时。估计SIS光子探测器的动态范围高于10〜9,其超越了TES钻孔仪可实现的动态范围。 SIS光子检测器,SISCAM-9的九元阵列是开发的,并且在亚颌胶望远镜中评估了它们的性能。随着具有GaAs-JFET电荷积分读出电路的集成电子设备的开发,SIS光子检测器将是亚倍数波区域中的理想成像阵列。由于其在各种操作条件下的动态范围和射击噪声有限的性能下,SIS光子探测器可用于各种天文仪器以及太赫兹技术的其他领域。

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