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一种基于超导微热量计的高分辨率伽马射线光谱仪。

A high resolution gamma-ray spectrometer based on superconducting microcalorimeters.

作者信息

Bennett D A, Horansky R D, Schmidt D R, Hoover A S, Winkler R, Alpert B K, Beall J A, Doriese W B, Fowler J W, Fitzgerald C P, Hilton G C, Irwin K D, Kotsubo V, Mates J A B, O'Neil G C, Rabin M W, Reintsema C D, Schima F J, Swetz D S, Vale L R, Ullom J N

机构信息

National Institute of Standards and Technology, Boulder, Colorado 80305, USA.

出版信息

Rev Sci Instrum. 2012 Sep;83(9):093113. doi: 10.1063/1.4754630.

Abstract

Improvements in superconductor device fabrication, detector hybridization techniques, and superconducting quantum interference device readout have made square-centimeter-sized arrays of gamma-ray microcalorimeters, based on transition-edge sensors (TESs), possible. At these collecting areas, gamma microcalorimeters can utilize their unprecedented energy resolution to perform spectroscopy in a number of applications that are limited by closely-spaced spectral peaks, for example, the nondestructive analysis of nuclear materials. We have built a 256 pixel spectrometer with an average full-width-at-half-maximum energy resolution of 53 eV at 97 keV, a useable dynamic range above 400 keV, and a collecting area of 5 cm(2). We have demonstrated multiplexed readout of the full 256 pixel array with 236 of the pixels (91%) giving spectroscopic data. This is the largest multiplexed array of TES microcalorimeters to date. This paper will review the spectrometer, highlighting the instrument design, detector fabrication, readout, operation of the instrument, and data processing. Further, we describe the characterization and performance of the newest 256 pixel array.

摘要

超导器件制造、探测器混合技术以及超导量子干涉器件读出技术的进步,使得基于过渡边缘传感器(TES)的平方厘米级伽马射线微热量计阵列成为可能。在这些收集区域,伽马微热量计可以利用其前所未有的能量分辨率,在许多受紧密间隔光谱峰限制的应用中进行光谱分析,例如核材料的无损分析。我们已经构建了一台256像素光谱仪,在97 keV能量下平均半高宽能量分辨率为53 eV,可用动态范围超过400 keV,收集面积为5平方厘米。我们已经展示了对整个256像素阵列的多路复用读出,其中236个像素(91%)给出了光谱数据。这是迄今为止最大的TES微热量计多路复用阵列。本文将对该光谱仪进行综述,重点介绍仪器设计、探测器制造、读出、仪器操作和数据处理。此外,我们还描述了最新256像素阵列的特性和性能。

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