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Elemental composition x-ray fluorescence analysis with a TES-based high-resolution x-ray spectrometer
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作者 吴秉骏 夏经铠 +4 位作者 张硕 傅强 章辉 谢晓明 刘志 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第9期67-73,共7页
The accurate analysis of the elemental composition plays a crucial role in the research of functional materials.The emitting characteristic x-ray fluorescence(XRF)photons can be used for precisely discriminating the s... The accurate analysis of the elemental composition plays a crucial role in the research of functional materials.The emitting characteristic x-ray fluorescence(XRF)photons can be used for precisely discriminating the specified element.The detection accuracy of conventional XRF methodology using semiconductor detector is limited by the energy resolution,thus posing a challenge in accurately scaling the actual energy of each XRF photon.We adopt a novel high-resolution x-ray spectrometer based on the superconducting transition-edge sensor(TES)for the XRF spectroscopy measurement of different elements.Properties including high energy resolution,high detection efficiency and precise linearity of the new spectrometer will bring significant benefits in analyzing elemental composition via XRF.In this paper,we study the Ledge emission line profiles of three adjacent rare earth elements with the evenly mixed sample of their oxide components:terbium,dysprosium and holmium.Two orders of magnitude better energy resolution are obtained compared to a commercial silicon drift detector.With this TES-based spectrometer,the spectral lines overlapped or interfered by background can be clearly distinguished,thus making the chemical component analysis more accurate and quantitative.A database of coefficient values for the line strength of the spectrum can then be constructed thereafter.Equipped with the novel XRF spectrometer and an established coefficient database,a direct analysis of the composition proportion of a certain element in an unknown sample can be achieved with high accuracy. 展开更多
关键词 x-ray emission spectra and fluorescence superconducting transition-edge sensor rare earth elements chemical composition analysis
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面向先进光源线站等大科学装置的低温X射线能谱仪原理及应用进展
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作者 张硕 崔伟 +9 位作者 金海 陈六彪 王俊杰 伍文涛 吴秉骏 夏经铠 宋艳汝 杨瑾屏 翁祖谦 刘志 《物理学报》 SCIE EI CAS CSCD 北大核心 2021年第18期75-106,共32页
低温X射线能谱仪兼具高能量分辨率、高探测效率、低噪声、无死层等特点,能量分辨率与X射线入射方向无关,在暗弱的弥散X射线能谱测量方面具有明显优势.基于同步辐射及自由电子激光的先进光源线站、加速器、高电荷态离子阱、空间X射线卫... 低温X射线能谱仪兼具高能量分辨率、高探测效率、低噪声、无死层等特点,能量分辨率与X射线入射方向无关,在暗弱的弥散X射线能谱测量方面具有明显优势.基于同步辐射及自由电子激光的先进光源线站、加速器、高电荷态离子阱、空间X射线卫星这类大科学装置的快速发展对X射线探测器提出了更高要求,因而低温X射线能谱仪被逐步引入到APS,NSLS,LCLS-Ⅱ,Spring-8,SSNL,ATHENA,HUBS等大科学装置与能谱测量相关科学研究中.本文从低温X射线能谱仪的工作原理及分类、能谱仪系统结构、主要性能指标以及国内外大科学装置研究现状及发展趋势等方面作简要综述. 展开更多
关键词 同步辐射装置 X 射线卫星 X 射线能谱仪 低温探测器
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