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直线加速器相干光源处用于硬X射线散射和光谱学的液体喷射终端站。

The Liquid Jet Endstation for Hard X-ray Scattering and Spectroscopy at the Linac Coherent Light Source.

作者信息

Antolini Cali, Sosa Alfaro Victor, Reinhard Marco, Chatterjee Gourab, Ribson Ryan, Sokaras Dimosthenis, Gee Leland, Sato Takahiro, Kramer Patrick L, Raj Sumana Laxmi, Hayes Brandon, Schleissner Pamela, Garcia-Esparza Angel T, Lim Jinkyu, Babicz Jeffrey T, Follmer Alec H, Nelson Silke, Chollet Matthieu, Alonso-Mori Roberto, van Driel Tim B

机构信息

SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA 94025, USA.

Department of Energy and Environmental Engineering, The Catholic University of Korea, Bucheon 14662, Republic of Korea.

出版信息

Molecules. 2024 May 15;29(10):2323. doi: 10.3390/molecules29102323.

Abstract

The ability to study chemical dynamics on ultrafast timescales has greatly advanced with the introduction of X-ray free electron lasers (XFELs) providing short pulses of intense X-rays tailored to probe atomic structure and electronic configuration. Fully exploiting the full potential of XFELs requires specialized experimental endstations along with the development of techniques and methods to successfully carry out experiments. The liquid jet endstation (LJE) at the Linac Coherent Light Source (LCLS) has been developed to study photochemistry and biochemistry in solution systems using a combination of X-ray solution scattering (XSS), X-ray absorption spectroscopy (XAS), and X-ray emission spectroscopy (XES). The pump-probe setup utilizes an optical laser to excite the sample, which is subsequently probed by a hard X-ray pulse to resolve structural and electronic dynamics at their intrinsic femtosecond timescales. The LJE ensures reliable sample delivery to the X-ray interaction point via various liquid jets, enabling rapid replenishment of thin samples with millimolar concentrations and low sample volumes at the 120 Hz repetition rate of the LCLS beam. This paper provides a detailed description of the LJE design and of the techniques it enables, with an emphasis on the diagnostics required for real-time monitoring of the liquid jet and on the spatiotemporal overlap methods used to optimize the signal. Additionally, various scientific examples are discussed, highlighting the versatility of the LJE.

摘要

随着X射线自由电子激光(XFEL)的引入,在超快时间尺度上研究化学动力学的能力得到了极大提升。XFEL能提供高强度X射线短脉冲,适用于探测原子结构和电子构型。要充分发掘XFEL的全部潜力,需要专门的实验终端站,以及成功开展实验的技术和方法。直线加速器相干光源(LCLS)的液体喷射终端站(LJE)已被开发出来,用于研究溶液体系中的光化学和生物化学,采用了X射线溶液散射(XSS)、X射线吸收光谱(XAS)和X射线发射光谱(XES)相结合的方法。泵浦-探测装置利用光学激光激发样品,随后用硬X射线脉冲对其进行探测,以解析其固有的飞秒时间尺度上的结构和电子动力学。LJE通过各种液体喷射确保将样品可靠地输送到X射线相互作用点,能够以LCLS光束120 Hz的重复频率,用毫摩尔浓度和低样品体积快速补充薄样品。本文详细描述了LJE的设计及其所采用的技术,重点介绍了实时监测液体喷射所需的诊断方法以及用于优化信号的时空重叠方法。此外,还讨论了各种科学实例,突出了LJE的多功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dbc/11124266/f9b910f23c37/molecules-29-02323-g001.jpg

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