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Direct-current superconducting quantum interference devices for the readout of metallic magnetic calorimeters

机译:直流超导量子干涉仪,用于读出金属磁热计

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摘要

In this paper we analyze the influence of the coupled energy sensitivity epsilon(c)(f) of a superconducting quantum interference device (SQUID) on the energy resolution of metallic magnetic calorimeters. From this, we derive an upper limit on the readout noise that still allows for the readout of detectors with sub-eV energy resolution. Furthermore, we present two dc-SQUID designs, namely a first-stage SQUID and an N-SQUID series array, that are suited for the readout of high-resolution detectors. We show that fabricated SQUIDs have a noise performance that is competitive to the best state-of-the-art dc-SQUIDs. For the first-stage SQUIDs, we found a correlation between the 1/f noise exponent alpha and the 1/f noise prefactor epsilon(1/f) (1 Hz). Using both kind of SQUIDs we have built a two-stage dc-SQUID configuration. We show that this setup allows for the readout of x-ray detectors with a resolving power E/Delta E-FWHM > 3000.
机译:在本文中,我们分析了超导量子干涉装置(SQUID)的耦合能量灵敏度epsilon(c)(f)对金属磁热计的能量分辨率的影响。由此,我们得出了读取噪声的上限,该上限仍然允许以亚eV能量分辨率读取检测器。此外,我们提出了两种直流SQUID设计,即第一级SQUID和N-SQUID系列阵列,它们适合于高分辨率探测器的读出。我们证明了人造SQUID的噪声性能可与最佳的最新dc-SQUID竞争。对于第一级SQUID,我们发现1 / f噪声指数alpha与1 / f噪声系数epsilon(1 / f)(1 Hz)之间具有相关性。使用这两种SQUID,我们构建了一个两级dc-SQUID配置。我们证明,该设置可以读取分辨力E / Delta E-FWHM> 3000的X射线探测器。

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