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基于自由电子激光的逐线扫描 X 射线技术实现超快过程的单次探测。

Single-shot Monitoring of Ultrafast Processes via X-ray Streaking at a Free Electron Laser.

机构信息

Paul Scherrer Institut, 5232, Villigen PSI, Switzerland.

Laboratoire d'Optique Appliquée, ENSTA ParisTech - CNRS UMR 7639 École Polytechnique, Chemin de la Hunière, 91761, Palaiseau, France.

出版信息

Sci Rep. 2017 Aug 3;7(1):7253. doi: 10.1038/s41598-017-07069-z.

Abstract

The advent of x-ray free electron lasers has extended the unique capabilities of resonant x-ray spectroscopy techniques to ultrafast time scales. Here, we report on a novel experimental method that allows retrieving with a single x-ray pulse the time evolution of an ultrafast process, not only at a few discrete time delays, but continuously over an extended time window. We used a single x-ray pulse to resolve the laser-induced ultrafast demagnetisation dynamics in a thin cobalt film over a time window of about 1.6 ps with an excellent signal to noise ratio. From one representative single shot measurement we extract a spin relaxation time of (130 ± 30) fs with an average value, based on 193 single shot events of (113 ± 20) fs. These results are limited by the achieved experimental time resolution of 120 fs, and both values are in excellent agreement with previous results and theoretical modelling. More generally, this new experimental approach to ultrafast x-ray spectroscopy paves the way to the study of non-repetitive processes that cannot be investigated using traditional repetitive pump-probe schemes.

摘要

X 射线自由电子激光的出现将共振 X 射线光谱技术的独特功能扩展到了超快时间尺度。在这里,我们报告了一种新的实验方法,该方法允许仅用一个 X 射线脉冲即可在扩展的时间窗口内连续而非离散地获取超快过程的时间演化。我们使用单个 X 射线脉冲在大约 1.6 ps 的时间窗口内解析了薄钴膜中的激光诱导超快退磁动力学,其信噪比非常好。从一个代表性的单次测量中,我们提取了自旋弛豫时间为 (130 ± 30) fs,平均值为 (113 ± 20) fs,基于 193 次单次事件。这些结果受到所达到的 120 fs 实验时间分辨率的限制,并且这两个值都与先前的结果和理论模型非常吻合。更一般地说,这种用于超快 X 射线光谱学的新实验方法为研究无法使用传统重复泵浦探测方案进行研究的非重复过程铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be9e/5543111/319acc617c79/41598_2017_7069_Fig1_HTML.jpg

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