Kim Seonghan, Hwang SunMin, Jang Hoyoung, Lee Seungcheol, Hyun HyoJung
Pohang Accelerator Laboratory, POSTECH, Pohang, Gyeongbuk 37673, Republic of Korea.
J Synchrotron Radiat. 2024 Sep 1;31(Pt 5):1019-1028. doi: 10.1107/S1600577524006003. Epub 2024 Jul 29.
The Pohang Accelerator Laboratory X-ray Free-Electron Laser (PAL-XFEL) operates hard X-ray and soft X-ray beamlines for conducting scientific experiments providing intense ultrashort X-ray pulses based on the self-amplified spontaneous emission (SASE) process. The X-ray free-electron laser is characterized by strong pulse-to-pulse fluctuations resulting from the SASE process. Therefore, online photon diagnostics are very important for rigorous measurements. The concept of photo-absorption and emission using solid materials is seldom considered in soft X-ray beamline diagnostics. Instead, gas monitoring detectors, which utilize the photo-ionization of noble gas, are employed for monitoring the beam intensity. To track the beam position at the soft X-ray beamline in addition to those intensity monitors, an X-ray ionization beam position monitor (XIBPM) has been developed and characterized at the soft X-ray beamline of PAL-XFEL. The XIBPM utilizes ionization of either the residual gas in an ultra-high-vacuum environment or injected krypton gas, along with a microchannel plate with phosphor. The XIBPM was tested separately for monitoring horizontal and vertical beam positions, confirming the feasibility of tracking relative changes in beam position both on average and down to single-shot measurements. This paper presents the basic structure and test results of the newly developed non-invasive XIBPM.
浦项加速器实验室X射线自由电子激光(PAL-XFEL)运行硬X射线和软X射线光束线,用于开展科学实验,基于自放大自发辐射(SASE)过程提供高强度超短X射线脉冲。X射线自由电子激光的特点是SASE过程会导致脉冲间的强烈波动。因此,在线光子诊断对于精确测量非常重要。在软X射线光束线诊断中,很少考虑使用固体材料进行光吸收和发射的概念。相反,利用稀有气体光电离的气体监测探测器被用于监测光束强度。为了除强度监测器之外还能在软X射线光束线追踪光束位置,一种X射线电离光束位置监测器(XIBPM)已在PAL-XFEL的软X射线光束线开发并进行了特性表征。XIBPM利用超高真空环境中的残余气体或注入的氪气的电离,以及带有磷光体的微通道板。对XIBPM分别进行了水平和垂直光束位置监测测试,证实了追踪光束位置相对变化在平均水平以及单次测量中的可行性。本文介绍了新开发非侵入式XIBPM的基本结构和测试结果。