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在PAL-XFEL的NCI实验站使用柯克帕特里克-贝兹镜聚焦X射线自由电子激光脉冲。

Focusing X-ray free-electron laser pulses using Kirkpatrick-Baez mirrors at the NCI hutch of the PAL-XFEL.

作者信息

Kim Jangwoo, Kim Hyo Yun, Park Jaehyun, Kim Sangsoo, Kim Sunam, Rah Seungyu, Lim Jun, Nam Ki Hyun

机构信息

Pohang Accelerator Laboratory, POSTECH, Pohang, Gyeongbuk 37673, Republic of Korea.

出版信息

J Synchrotron Radiat. 2018 Jan 1;25(Pt 1):289-292. doi: 10.1107/S1600577517016186.

Abstract

The Pohang Accelerator Laboratory X-ray Free-Electron Laser (PAL-XFEL) is a recently commissioned X-ray free-electron laser (XFEL) facility that provides intense ultrashort X-ray pulses based on the self-amplified spontaneous emission process. The nano-crystallography and coherent imaging (NCI) hutch with forward-scattering geometry is located at the hard X-ray beamline of the PAL-XFEL and provides opportunities to perform serial femtosecond crystallography and coherent X-ray diffraction imaging. To produce intense high-density XFEL pulses at the interaction positions between the X-rays and various samples, a microfocusing Kirkpatrick-Baez (KB) mirror system that includes an ultra-precision manipulator has been developed. In this paper, the design of a KB mirror system that focuses the hard XFEL beam onto a fixed sample point of the NCI hutch, which is positioned along the hard XFEL beamline, is described. The focusing system produces a two-dimensional focusing beam at approximately 2 µm scale across the 2-11 keV photon energy range. XFEL pulses of 9.7 keV energy were successfully focused onto an area of size 1.94 µm × 2.08 µm FWHM.

摘要

浦项加速器实验室X射线自由电子激光装置(PAL-XFEL)是一座最近投入使用的X射线自由电子激光(XFEL)设施,它基于自放大自发辐射过程提供高强度超短X射线脉冲。具有前向散射几何结构的纳米晶体学与相干成像(NCI)实验站位于PAL-XFEL的硬X射线束线上,为开展串联飞秒晶体学和相干X射线衍射成像提供了机会。为了在X射线与各种样品的相互作用位置产生高强度高密度的XFEL脉冲,已开发出一种包括超精密操纵器的微聚焦柯克帕特里克-贝兹(KB)镜系统。本文描述了一种KB镜系统的设计,该系统将硬XFEL光束聚焦到沿硬XFEL束线定位的NCI实验站的固定样品点上。聚焦系统在2 - 11千电子伏特光子能量范围内产生约2微米尺度的二维聚焦光束。能量为9.7千电子伏特的XFEL脉冲成功聚焦到了半高宽为1.94微米×2.08微米的区域上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f27/5741134/7da8ec17248c/s-25-00289-fig1.jpg

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