过渡态的4d结构动力学:自由分子、团簇和纳米晶体

S. A. Aseyev, A. Ischenko, I. Kochikov, B. Mironov, E. Ryabov, Yury A. Zhabanov, V. Kompanets, A. L. Malinovskii, A. Otlyotov, S. Chekalin
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引用次数: 0

摘要

用高时空分辨率的方法研究物质的结构动力学代表了现代科学的新方向,并提供了对物理、化学、生物和材料科学领域“结构-动力学-性质”三位一体内部关系的理解。利用飞秒和阿秒激光脉冲激发和形成同步超短光电子束进行探测,可以在必要的时空尺度上观察样品中原子核和电子的相干动力学。使用激光光谱学可以确定样品的能级,并追踪它们随时间的演变。然而,从这些信息中提取物质的结构动力学是通过间接方法实现的。本文介绍了用超短电子或x射线脉冲探测物体,研究激光激发物质核在时空连续体(4D)中相干动力学的直接方法,并描述了他们在中国科学院光谱学研究所用超快电子衍射仪和透射电子显微镜进行的实验。
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4D-Structural Dynamics of the Transition State: Free Molecules, Clusters and Nanocrystals
Study of the structural dynamics of matter by methods with high spatially-temporal resolution represents new direction in modern science and provides the understanding of relationship inside the "structure – dynamics – property" triad in the field of physics, chemistry, biology and materials science. Application of femto and attosecond laser pulses for excitation and formation of synchronized ultrashort photoelectron bunches for probing makes it possible to observe coherent dynamics of nuclei and electrons in samples on necessary space-time scales. Using laser spectroscopy one can determine energy levels of the sample and trace their evolution over time. However, the extraction of the structural dynamics of matter from this information is achieved by indirect methods. In the paper authors demonstrate the direct approaches to the study of the coherent dynamics of the nuclei of laser-excited matter in the space-time continuum (4D), based on probing the object with ultra-short electron or X-ray pulses, and describe their experiments, which were carried out using ultrafast electron diffractometer and transmission electron microscope at the Institute of Spectroscopy RAS.
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