Femtosecond Beam Science

Femtosecond Beam Science
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飞秒束科学

DOI:
10.1142/p278
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发表时间:
2005
期刊:
--
影响因子:
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通讯作者:
M. Uesaka
M. Uesaka
中科院分区:
--
文献类型:
--
作者:
M. Uesaka

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这本书探索了飞秒光束科学的最新发展和进步,通过该领域的领导者的贡献使这些更容易获得。每一篇文章的目的都是通过解释特定领域,回顾世界各地的最新进展,并介绍飞秒脉冲在该领域的重要成果和未来可能的用途,使人们能够了解飞秒束流科学的特定领域。飞秒束流科学有望引领实现动态显微技术的发展,即原子运动、化学反应、蛋白质动力学等微观动力学的可视化。先进的时间分辨X射线衍射使声子、热膨胀和冲击波传播的可视化成为可能,时间分辨率为10皮秒。这些成果将延伸到飞秒X射线源和第四代同步辐射光源的发展。动态显微技术有望成为未来动态纳米技术的重要研究方向之一。因此,本书提供的飞秒束流科学概述将非常有用。/a
This book explores recent developments and advances in femtosecond beam science, making these more accessible through contributions from leaders in the field. Each contribution aims to make the particular area of femtosecond beam science accessible through explaining the particular field, reviewing recent advances worldwide, and featuring important results and possible future uses of femtosecond pulses in the field. Femtosecond beam science is expected to lead to the development of technology realizing dynamic microscopy, that is, the visualization of atomic motions, chemical reactions, protein dynamics and other microscopic dynamics. Advances have enabled the visualizations of phonons, thermal expansion and shock-wave propagation by advanced time-resolved X-ray diffraction, at a time resolution of 10 picoseconds. These achievements will extend to the development of femtosecond X-ray sources and fourth generation synchrotron light sources. Dynamic microscopy promises to be one of the most important issues in dynamic nanotechnology in the future. As a result, the overview of femtosecond beam science provided by this book will be useful./a