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一种用于空间和时间分辨光谱学的共振非弹性X射线散射(RIXS)光谱仪的设计。

A design of resonant inelastic X-ray scattering (RIXS) spectrometer for spatial- and time-resolved spectroscopy.

作者信息

Chuang Yi De, Feng Xuefei, Glans-Suzuki Per Anders, Yang Wanli, Padmore Howard, Guo Jinghua

机构信息

Advanced Light Source, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS 6-2100, Berkeley, CA 94720, USA.

出版信息

J Synchrotron Radiat. 2020 May 1;27(Pt 3):695-707. doi: 10.1107/S1600577520004440. Epub 2020 Apr 16.

Abstract

The optical design of a Hettrick-Underwood-style soft X-ray spectrometer with Wolter type 1 mirrors is presented. The spectrometer with a nominal length of 3.1 m can achieve a high resolving power (resolving power higher than 10000) in the soft X-ray regime when a small source beam (<3 µm in the grating dispersion direction) and small pixel detector (5 µm effective pixel size) are used. Adding Wolter mirrors to the spectrometer before its dispersive elements can realize the spatial imaging capability, which finds applications in the spectroscopic studies of spatially dependent electronic structures in tandem catalysts, heterostructures, etc. In the pump-probe experiments where the pump beam perturbs the materials followed by the time-delayed probe beam to reveal the transient evolution of electronic structures, the imaging capability of the Wolter mirrors can offer the pixel-equivalent femtosecond time delay between the pump and probe beams when their wavefronts are not collinear. In combination with some special sample handing systems, such as liquid jets and droplets, the imaging capability can also be used to study the time-dependent electronic structure of chemical transformation spanning multiple time domains from microseconds to nanoseconds. The proposed Wolter mirrors can also be adopted to the existing soft X-ray spectrometers that use the Hettrick-Underwood optical scheme, expanding their capabilities in materials research.

摘要

介绍了一种采用沃尔特1型镜的赫特里克-安德伍德式软X射线光谱仪的光学设计。当使用小源光束(在光栅色散方向上<3 µm)和小像素探测器(有效像素尺寸为5 µm)时,标称长度为3.1 m的光谱仪在软X射线波段可实现高分辨能力(分辨能力高于10000)。在光谱仪的色散元件之前添加沃尔特镜可实现空间成像能力,这在串联催化剂、异质结构等中空间相关电子结构的光谱研究中具有应用价值。在泵浦-探测实验中,泵浦光束扰动材料,随后是延时探测光束以揭示电子结构的瞬态演化,当泵浦光束和探测光束的波前不共线时沃尔特镜的成像能力可提供像素等效的飞秒时间延迟。结合一些特殊的样品处理系统,如液体射流和液滴,成像能力还可用于研究从微秒到纳秒的多个时域内化学转化的时间相关电子结构。所提出的沃尔特镜也可应用于现有的采用赫特里克-安德伍德光学方案的软X射线光谱仪,扩展其在材料研究中的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b483/7206552/9b61e6e06ef6/s-27-00695-fig1.jpg

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