Bzheumikhova Karina, Kayser Y, Unterumsberger R, Weser J, Stadelhoff C, Beckhoff B
Physikalisch-Technische Bundesanstalt, Abbestraße 2-12, Berlin, Germany.
Helmut Fischer GmbH Institut für Elektronik und Messtechnik, Industriestrasse 21, 71069 Sindelfingen, Germany.
J Synchrotron Radiat. 2025 Jan 1;32(Pt 1):171-179. doi: 10.1107/S1600577524010683.
This paper introduces a novel slit-less wavelength-dispersive spectrometer design that incorporates a single-bounce monocapillary with the goal of positioning the sample directly on the Rowland circle, thereby eliminating the need for a traditional entrance slit. This configuration enhances photon throughput while preserving energy resolution, demonstrated in comparative measurements on boron nitride and different lithium nickel manganese cobalt oxide cathodes. A common alternative to an entrance slit for limiting the source size on the Rowland circle is a customized design of the beamline involving a focusing optics unit consisting of two Kirkpatrick-Baez mirrors close to the end station. The new slit-less design does not rely on specialized beamlines and can be considered, thanks to the increased efficiency, for spectrometers using laboratory based sources equipped with equivalent optics. The comparative measurements found that the resolving power achieved was E/ΔE = 1085 at 401.5 eV incident energy, and the enhancement in detection efficiency was a factor of 3.7 due to more effective utilization of the X-ray beam.
本文介绍了一种新颖的无狭缝波长色散光谱仪设计,该设计采用了单反射单毛细管,目的是将样品直接放置在罗兰圆上,从而无需传统的入射狭缝。这种配置提高了光子通量,同时保持了能量分辨率,这在对氮化硼和不同的锂镍锰钴氧化物阴极的对比测量中得到了证明。用于在罗兰圆上限制光源尺寸的入射狭缝的一种常见替代方案是对光束线进行定制设计,该设计包括一个聚焦光学单元,该单元由靠近终端站的两个柯克帕特里克-贝兹镜组成。新的无狭缝设计不依赖于专门的光束线,并且由于效率提高,可以考虑用于使用配备等效光学器件的基于实验室的光源的光谱仪。对比测量发现,在401.5 eV的入射能量下,实现的分辨能力为E/ΔE = 1085,并且由于更有效地利用了X射线束,检测效率提高了3.7倍。