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软X射线驱动的飞秒分子动力学

Soft X-ray-driven femtosecond molecular dynamics.

作者信息

Gagnon Etienne, Ranitovic Predrag, Tong Xiao-Min, Cocke C L, Murnane Margaret M, Kapteyn Henry C, Sandhu Arvinder S

机构信息

JILA, University of Colorado, Boulder, CO 80309-0441, USA.

出版信息

Science. 2007 Sep 7;317(5843):1374-8. doi: 10.1126/science.1144920.

Abstract

The direct observation of molecular dynamics initiated by x-rays has been hindered to date by the lack of bright femtosecond sources of short-wavelength light. We used soft x-ray beams generated by high-harmonic upconversion of a femtosecond laser to photoionize a nitrogen molecule, creating highly excited molecular cations. A strong infrared pulse was then used to probe the ultrafast electronic and nuclear dynamics as the molecule exploded. We found that substantial fragmentation occurs through an electron-shakeup process, in which a second electron is simultaneously excited during the soft x-ray photoionization process. During fragmentation, the molecular potential seen by the electron changes rapidly from nearly spherically symmetric to a two-center molecular potential. Our approach can capture in real time and with angstrom resolution the influence of ionizing radiation on a range of molecular systems, probing dynamics that are inaccessible with the use of other techniques.

摘要

迄今为止,由于缺乏明亮的飞秒短波长光源,由X射线引发的分子动力学的直接观测受到了阻碍。我们利用飞秒激光的高谐波上转换产生的软X射线束使氮分子发生光电离,从而产生高度激发的分子阳离子。然后使用强红外脉冲来探测分子爆炸时的超快电子和核动力学。我们发现,大量的碎片化是通过电子激发过程发生的,在此过程中,第二个电子在软X射线光电离过程中同时被激发。在碎片化过程中,电子所看到的分子势从几乎球对称迅速变为双中心分子势。我们的方法能够以埃分辨率实时捕捉电离辐射对一系列分子系统的影响,探测其他技术无法触及的动力学。

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