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揭示并驱动高能量、高强度 X 射线脉冲的隐藏共振。

Unveiling and driving hidden resonances with high-fluence, high-intensity x-ray pulses.

机构信息

Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

Phys Rev Lett. 2011 Dec 2;107(23):233001. doi: 10.1103/PhysRevLett.107.233001. Epub 2011 Nov 30.

Abstract

We show that high fluence, high-intensity x-ray pulses from the world's first hard x-ray free-electron laser produce nonlinear phenomena that differ dramatically from the linear x-ray-matter interaction processes that are encountered at synchrotron x-ray sources. We use intense x-ray pulses of sub-10-fs duration to first reveal and subsequently drive the 1s↔2p resonance in singly ionized neon. This photon-driven cycling of an inner-shell electron modifies the Auger decay process, as evidenced by line shape modification. Our work demonstrates the propensity of high-fluence, femtosecond x-ray pulses to alter the target within a single pulse, i.e., to unveil hidden resonances, by cracking open inner shells energetically inaccessible via single-photon absorption, and to consequently trigger damaging electron cascades at unexpectedly low photon energies.

摘要

我们表明,来自世界上第一台硬 X 射线自由电子激光的高能量、高强度 X 射线脉冲会产生与在同步加速器 X 射线源中遇到的线性 X 射线与物质相互作用过程截然不同的非线性现象。我们使用持续时间小于 10 飞秒的强 X 射线脉冲,首次揭示并随后驱动单电离氖的 1s↔2p 共振。这种光子驱动的内壳层电子循环改变了俄歇衰减过程,这可以通过线形状的改变来证明。我们的工作表明,高能量、飞秒 X 射线脉冲有改变单个脉冲内目标的倾向,即通过在单光子吸收无法达到的能量上打开内壳层来揭示隐藏的共振,并随后以出乎意料的低光子能量引发破坏性的电子级联。

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