Suppr超能文献

用于在X射线吸收光谱束线进行高质量荧光和吸收测量的高能量分辨率五晶体光谱仪。

High energy resolution five-crystal spectrometer for high quality fluorescence and absorption measurements on an x-ray absorption spectroscopy beamline.

作者信息

Llorens Isabelle, Lahera Eric, Delnet William, Proux Olivier, Braillard Aurélien, Hazemann Jean-Louis, Prat Alain, Testemale Denis, Dermigny Quentin, Gelebart Frederic, Morand Marc, Shukla Abhay, Bardou Nathalie, Ulrich Olivier, Arnaud Stéphan, Berar Jean-François, Boudet Nathalie, Caillot Bernard, Chaurand Perrine, Rose Jérôme, Doelsch Emmanuel, Martin Philippe, Solari Pier Lorenzo

机构信息

CEA∕DSM∕INAC∕SP2M∕NRS, F-38054 Grenoble cedex 9, France.

出版信息

Rev Sci Instrum. 2012 Jun;83(6):063104. doi: 10.1063/1.4728414.

Abstract

Fluorescence detection is classically achieved with a solid state detector (SSD) on x-ray absorption spectroscopy (XAS) beamlines. This kind of detection however presents some limitations related to the limited energy resolution and saturation. Crystal analyzer spectrometers (CAS) based on a Johann-type geometry have been developed to overcome these limitations. We have tested and installed such a system on the BM30B/CRG-FAME XAS beamline at the ESRF dedicated to the structural investigation of very dilute systems in environmental, material and biological sciences. The spectrometer has been designed to be a mobile device for easy integration in multi-purpose hard x-ray synchrotron beamlines or even with a laboratory x-ray source. The CAS allows to collect x-ray photons from a large solid angle with five spherically bent crystals. It will cover a large energy range allowing to probe fluorescence lines characteristic of all the elements from Ca (Z = 20) to U (Z = 92). It provides an energy resolution of 1-2 eV. XAS spectroscopy is the main application of this device even if other spectroscopic techniques (RIXS, XES, XRS, etc.) can be also achieved with it. The performances of the CAS are illustrated by two experiments that are difficult or impossible to perform with SSD and the complementarity of the CAS vs SSD detectors is discussed.

摘要

在X射线吸收光谱(XAS)光束线上,荧光检测传统上是通过固态探测器(SSD)来实现的。然而,这种检测方式存在一些局限性,比如能量分辨率有限和饱和问题。基于约翰型几何结构的晶体分析仪光谱仪(CAS)已被开发出来以克服这些局限性。我们在欧洲同步辐射装置(ESRF)的BM30B/CRG - FAME XAS光束线上测试并安装了这样一个系统,该光束线致力于环境、材料和生物科学中极稀体系的结构研究。该光谱仪被设计成一个移动设备,以便于集成到多用途硬X射线同步辐射光束线中,甚至可以与实验室X射线源配合使用。CAS能够通过五块球面弯曲晶体从大立体角收集X射线光子。它将覆盖很大的能量范围,从而能够探测从钙(Z = 20)到铀(Z = 92)所有元素的特征荧光线。它的能量分辨率为1 - 2电子伏特。即使使用该设备也能实现其他光谱技术(共振非弹性X射线散射、X射线发射光谱、X射线拉曼光谱等),但XAS光谱仍是该设备的主要应用领域。通过两个使用SSD难以或无法进行的实验展示了CAS的性能,并讨论了CAS与SSD探测器的互补性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验