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Superconducting tunnel junctions as detectors for high-resolution x-ray spectroscopy

机译:超导隧道结作为高分辨率X射线光谱检测器

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Superconducting tunnel junctions (STJs) are a type of cryogenic detector with a working temperature of about 100 mK. They allow the combination of low energy threshold, high quantum efficiency and good count rate capability with an excellent energy resolution; at an x-ray energy of 5.9 keV an energy resolution of 10.8 eV (FWHM) has been achieved. The detector system described is based on STJs which consist of two superconducting Al electrodes separated by a thin dielectric tunnel barrier. The tunneling process of quasi-particles created by deposition of energy in the electrodes leads to a detectable current signal. The STJ is equipped with a superconducting Pb absorber which is read out via phonons. The Pb absorber increases absorption efficiency (similar to50% at 6 keV) and suppresses detector artefacts. The degeneration of Pb, most probably due to oxidation, is overcome by the introduction of a protective SiO layer on top of the absorber. This layer leads to a slight reduction of energy resolution. Nevertheless, a resolution of 9.7 eV at 1.7 keV and of similar to20 eV at 5.9 keV could be realized with a prototype detector. Currently this STJ-based detector system is being incorporated into a prototype cryogenic spectrometer for XRF analysis. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:超导隧道结(STJ)是一种低温探测器,其工作温度约为100 mK。它们结合了低能量阈值,高量子效率和良好的计数率能力以及出色的能量分辨率;在5.9 keV的X射线能量下,已实现10.8 eV(FWHM)的能量分辨率。所描述的检测器系统基于STJ,该STJ包含两个由薄电介质隧道势垒隔开的超导Al电极。由能量在电极中的沉积产生的准粒子的隧穿过程导致可检测的电流信号。 STJ配备了超导的Pb吸收剂,可通过声子读出。 Pb吸收剂可提高吸收效率(在6 keV时接近50%)并抑制检测器伪影。 Pb的退化(很可能是由于氧化引起的)可以通过在吸收器顶部引入保护性SiO层来克服。该层导致能量分辨率略微降低。然而,使用原型检测器可以实现1.7 keV时的9.7 eV分辨率和5.9 keV时的20 eV分辨率。目前,这种基于STJ的检测器系统已整合到用于XRF分析的原型低温光谱仪中。版权所有(C)2004 John Wiley Sons,Ltd.

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