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X射线自由电子激光脉冲通过铝的传输:非平衡电子动力学的影响。

Transmissions of an x-ray free electron laser pulse through Al: Influence of nonequilibrium electron kinetics.

作者信息

Gao Cheng, Li Yongjun, Jin Fengtao, Zeng Jiaolong, Yuan Jianmin

机构信息

Department of Physics, College of Science, <a href="https://ror.org/05d2yfz11">National University of Defense Technology</a>, Changsha Hunan 410073, People's Republic of China.

Hunan Key Laboratory of Extreme Matter and Applications, <a href="https://ror.org/05d2yfz11">National University of Defense Technology</a>, Changsha Hunan 410073, People's Republic of China.

出版信息

Phys Rev E. 2024 Jul;110(1-2):015201. doi: 10.1103/PhysRevE.110.015201.

Abstract

A theoretical model for investigating the radiative transfer of an x-ray free electron laser (XFEL) pulse is developed based on a one-dimensional radiative transfer equation. The population dynamics of energy levels is obtained by rate equation approximation coupling with the Fokker-Planck equation, in which the electron energy distribution function (EEDF) is self-consistently determined. As an illustrative example, XFEL pulse propagation through a solid-density aluminum (Al) is investigated. The characteristics of the temporal evolution of the x-ray pulse shape, level population, and EEDF are demonstrated. The EEDF usually has two parts in XFEL-Al interactions: the near equilibrium part in the lower energy regions and the nonequilibrium part in the higher energy region. The deep gap between the two parts is quickly filled in the solid-density Al plasma. The pulse shape is distorted and the duration shortens as the x-ray pulse propagates through the Al sample. The x-ray transmission spectra were compared with experimental and other theoretical results, and good agreement was found. There are slight discrepancies between the transmission obtained by solving the Fokker-Planck equation and Maxwellian assumptions because nonequilibrium electrons in the higher energy region account for only a small fraction of the total electrons.

摘要

基于一维辐射传输方程,建立了一个用于研究X射线自由电子激光(XFEL)脉冲辐射传输的理论模型。通过速率方程近似与福克 - 普朗克方程耦合得到能级的粒子数动力学,其中电子能量分布函数(EEDF)是自洽确定的。作为一个示例,研究了XFEL脉冲在固体密度铝(Al)中的传播。展示了X射线脉冲形状、能级粒子数和EEDF的时间演化特性。在XFEL与Al的相互作用中,EEDF通常有两部分:低能区域的近平衡部分和高能区域的非平衡部分。在固体密度Al等离子体中,这两部分之间的深间隙会迅速被填满。当X射线脉冲穿过Al样品时,脉冲形状会发生畸变,持续时间会缩短。将X射线透射谱与实验结果和其他理论结果进行了比较,发现吻合良好。通过求解福克 - 普朗克方程得到的透射率与麦克斯韦假设之间存在轻微差异,因为高能区域的非平衡电子仅占总电子的一小部分。

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