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基于过渡边缘传感器的高分辨率X射线发射光谱学:当前性能与未来潜力

High-resolution X-ray emission spectroscopy with transition-edge sensors: present performance and future potential.

作者信息

Uhlig J, Doriese W B, Fowler J W, Swetz D S, Jaye C, Fischer D A, Reintsema C D, Bennett D A, Vale L R, Mandal U, O'Neil G C, Miaja-Avila L, Joe Y I, El Nahhas A, Fullagar W, Gustafsson F Parnefjord, Sundström V, Kurunthu D, Hilton G C, Schmidt D R, Ullom J N

机构信息

Department of Chemical Physics, Lund University, Lund, Sweden.

National Institute of Standards and Technology, 325 Broadway, MS 817.03, Boulder, CO 80305, USA.

出版信息

J Synchrotron Radiat. 2015 May;22(3):766-75. doi: 10.1107/S1600577515004312. Epub 2015 Apr 21.

Abstract

X-ray emission spectroscopy (XES) is a powerful element-selective tool to analyze the oxidation states of atoms in complex compounds, determine their electronic configuration, and identify unknown compounds in challenging environments. Until now the low efficiency of wavelength-dispersive X-ray spectrometer technology has limited the use of XES, especially in combination with weaker laboratory X-ray sources. More efficient energy-dispersive detectors have either insufficient energy resolution because of the statistical limits described by Fano or too low counting rates to be of practical use. This paper updates an approach to high-resolution X-ray emission spectroscopy that uses a microcalorimeter detector array of superconducting transition-edge sensors (TESs). TES arrays are discussed and compared with conventional methods, and shown under which circumstances they are superior. It is also shown that a TES array can be integrated into a table-top time-resolved X-ray source and a soft X-ray synchrotron beamline to perform emission spectroscopy with good chemical sensitivity over a very wide range of energies.

摘要

X射线发射光谱学(XES)是一种强大的元素选择性工具,可用于分析复杂化合物中原子的氧化态、确定其电子构型以及识别具有挑战性环境中的未知化合物。到目前为止,波长色散X射线光谱仪技术的低效率限制了XES的使用,特别是与较弱的实验室X射线源结合使用时。更高效的能量色散探测器要么由于法诺描述的统计限制而能量分辨率不足,要么计数率太低而无法实际使用。本文更新了一种高分辨率X射线发射光谱学方法,该方法使用超导转变边缘传感器(TES)的微热量计探测器阵列。文中讨论了TES阵列,并与传统方法进行了比较,展示了它们在何种情况下具有优势。还表明,TES阵列可以集成到台式时间分辨X射线源和软X射线同步加速器光束线中,以便在非常宽的能量范围内进行具有良好化学灵敏度的发射光谱分析。

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