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硬X射线波段自由电子激光的单脉冲相衬成像

Single-pulse phase-contrast imaging at free-electron lasers in the hard X-ray regime.

作者信息

Hagemann Johannes, Vassholz Malte, Hoeppe Hannes, Osterhoff Markus, Rosselló Juan M, Mettin Robert, Seiboth Frank, Schropp Andreas, Möller Johannes, Hallmann Jörg, Kim Chan, Scholz Markus, Boesenberg Ulrike, Schaffer Robert, Zozulya Alexey, Lu Wei, Shayduk Roman, Madsen Anders, Schroer Christian G, Salditt Tim

机构信息

Deutsches Elektronen Synchrotron - DESY, Notkestraße 85, 22607 Hamburg, Germany.

Institute for X-ray Physics, University of Göttingen, Friedrich-Hund-Platz 1, 37077 Göttingen, Germany.

出版信息

J Synchrotron Radiat. 2021 Jan 1;28(Pt 1):52-63. doi: 10.1107/S160057752001557X.

Abstract

X-ray free-electron lasers (XFELs) have opened up unprecedented opportunities for time-resolved nano-scale imaging with X-rays. Near-field propagation-based imaging, and in particular near-field holography (NFH) in its high-resolution implementation in cone-beam geometry, can offer full-field views of a specimen's dynamics captured by single XFEL pulses. To exploit this capability, for example in optical-pump/X-ray-probe imaging schemes, the stochastic nature of the self-amplified spontaneous emission pulses, i.e. the dynamics of the beam itself, presents a major challenge. In this work, a concept is presented to address the fluctuating illumination wavefronts by sampling the configuration space of SASE pulses before an actual recording, followed by a principal component analysis. This scheme is implemented at the MID (Materials Imaging and Dynamics) instrument of the European XFEL and time-resolved NFH is performed using aberration-corrected nano-focusing compound refractive lenses. Specifically, the dynamics of a micro-fluidic water-jet, which is commonly used as sample delivery system at XFELs, is imaged. The jet exhibits rich dynamics of droplet formation in the break-up regime. Moreover, pump-probe imaging is demonstrated using an infrared pulsed laser to induce cavitation and explosion of the jet.

摘要

X射线自由电子激光器(XFEL)为利用X射线进行时间分辨纳米尺度成像带来了前所未有的机遇。基于近场传播的成像,特别是在锥束几何结构中高分辨率实现的近场全息术(NFH),能够提供由单个XFEL脉冲捕获的样品动力学的全场视图。为了利用这一能力,例如在光泵浦/X射线探测成像方案中,自放大自发辐射脉冲的随机性,即光束本身的动力学,带来了重大挑战。在这项工作中,提出了一种概念,即在实际记录之前通过对SASE脉冲的配置空间进行采样,然后进行主成分分析,来解决波动的照明波前问题。该方案在欧洲XFEL的MID(材料成像与动力学)仪器上实现,并使用像差校正纳米聚焦复合折射透镜进行时间分辨NFH。具体而言,对一种常用于XFEL的微流体水射流的动力学进行了成像。该射流在破碎区域表现出丰富的液滴形成动力学。此外,还展示了使用红外脉冲激光诱导射流空化和爆炸的泵浦-探测成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5408/7842230/c2879c1a6bc0/s-28-00052-fig1.jpg

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