阿秒
束
物理
电子
激光器
原子物理学
脉搏(音乐)
半经典物理学
辐射
领域(数学)
光学
超短脉冲
核物理学
量子力学
量子
纯数学
探测器
数学
作者
Fang Tan,S. Y. Wang,Yuxue Zhang,Z. M. Zhang,Yutong Li,Y. C. Wu,Miao Yu,Yue Yang,G. li,T. K. Zhang,Yong Yan,Feng Lu,Wei Fan,Weimin Zhou,Yu Gu,B. Qiao
出处
期刊:Physical review
日期:2024-04-12
卷期号:109 (4)
标识
DOI:10.1103/physreve.109.045205
摘要
To find a way to control the electron-bunching process and the bunch-emitting directions when an ultraintense, linearly polarized laser pulse interacts with a nanoscale target, we explored the mechanisms for the periodical generation of relativistic attosecond electron bunches. By comparing the simulation results of three different target geometries, the results show that for nanofoil target, limiting the transverse target size to a small value and increasing the longitudinal size to a certain extent is an effective way to improve the total electron quantity in a single bunch. Then the subfemtosecond electronic dynamics when an ultrashort ultraintense laser grazing propagates along a nanofoil target was analyzed through particle-in-cell simulations and semiclassical analyses, which shows the detailed dynamics of the electron acceleration, radiation, and bunching process in the laser field. The analyses also show that the charge separation field produced by the ions plays a key role in the generation of electron bunches, which can be used to control the quantity of the corresponding attosecond radiation bunches by adjusting the length of the nanofoil target.
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