论文标题

超快电子衍射:可视化物质的动态状态

Ultrafast Electron Diffraction: Visualizing Dynamic States of Matter

论文作者

Filippetto, Daniele, Musumeci, Pietro, Li, Renkai, Siwick, Bradley John, Otto, Martin, Nunes, Martin Centurion Joao Pedro

论文摘要

自从发现电子波二元性以来,电子散射仪器已发展为一系列强大的技术,用于揭示物质的原子结构。除了检测到平衡结构的局部晶格变化外,最近的研究工作还针对实时可视化物质的动态演变的备受追捧的梦想。超快时间尺度的原子行为传递了有关相变和化学反应动力学的关键信息,材料和分子中电子自由度和核核度的耦合,结构,功能与先前隐藏的碱性或物质无序状态之间的相关性。超快电子脉冲在这项科学努力中起着至关重要的作用,而超快激光和粒子加速器技术的快速技术进步促进了它们的产生。这篇评论概述了过去几十年来该领域的非凡发展。超快电子束的物理和技术介绍了与超快电子衍射(UED)实验最相关的功绩数字。我们讨论了旨在改善这些测量值组合的时空分辨率的超短电子束的发电,操纵和表征的最新发展。从原子质物质和用于从固态和气相样品中检索动态结构信息的理论框架的电子散射的基本原理,以及基本的实验技术和几项具有里程碑意义的作品。具有不断提高能力的超快电子探针,再加上其他互补的基于光子或光谱方法,具有巨大的潜力,可以改变我们观察和理解原子尺度的能量和物质的能力。

Since the discovery of electron-wave duality, electron scattering instrumentation has developed into a powerful array of techniques for revealing the atomic structure of matter. Beyond detecting local lattice variations in equilibrium structures, recent research efforts have been directed towards the long sought-after dream of visualizing the dynamic evolution of matter in real-time. The atomic behavior at ultrafast timescales carries critical information on phase transition and chemical reaction dynamics, the coupling of electronic and nuclear degrees of freedom in materials and molecules, the correlation between structure, function and previously hidden metastable or nonequilibrium states of matter. Ultrafast electron pulses play an essential role in this scientific endeavor, and their generation has been facilitated by rapid technical advances in both ultrafast laser and particle accelerator technologies. This review presents a summary of the remarkable developments in this field over the last few decades. The physics and technology of ultrafast electron beams is presented with an emphasis on the figures of merit most relevant for ultrafast electron diffraction (UED) experiments. We discuss recent developments in the generation, manipulation and characterization of ultrashort electron beams aimed at improving the combined spatio-temporal resolution of these measurements. The fundamentals of electron scattering from atomic matter and the theoretical frameworks for retrieving dynamic structural information from solid-state and gas-phase samples are described, together with essential experimental techniques and several landmark works. Ultrafast electron probes with ever improving capabilities, combined with other complementary photon-based or spectroscopic approaches, hold tremendous potential for revolutionizing our ability to observe and understand energy and matter at atomic scales.

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