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光电子时间分辨全息术。

Time-resolved holography with photoelectrons.

机构信息

FOM Institute AMOLF, Science Park 113, 1098 XG Amsterdam, Netherlands.

出版信息

Science. 2011 Jan 7;331(6013):61-4. doi: 10.1126/science.1198450. Epub 2010 Dec 16.

Abstract

Ionization is the dominant response of atoms and molecules to intense laser fields and is at the basis of several important techniques, such as the generation of attosecond pulses that allow the measurement of electron motion in real time. We present experiments in which metastable xenon atoms were ionized with intense 7-micrometer laser pulses from a free-electron laser. Holographic structures were observed that record underlying electron dynamics on a sublaser-cycle time scale, enabling photoelectron spectroscopy with a time resolution of almost two orders of magnitude higher than the duration of the ionizing pulse.

摘要

电离是原子和分子对强激光场的主要响应,也是几种重要技术的基础,例如产生阿秒脉冲,从而可以实时测量电子运动。我们进行了实验,使用自由电子激光的强 7 微米激光脉冲使氙的亚稳态原子电离。观察到记录亚激光周期时间尺度下电子动力学的全息结构,使光电子能谱具有比电离脉冲持续时间高近两个数量级的时间分辨率。

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