Effect and mechanism of initial phase on electron radiation under linearly polarized Gaussian laser pulse

P. Yu, Yiqiu Wang, Jingjing Yan, Jianping Chang, Youwei Tian
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Abstract

In this paper, through numerical simulation, the effect of initial phase on nonlinear Thomson scattering in a Gaussian laser pulse under tight focusing is studied. It is found for the first time that the initial phase is out of synchronization with the maximum radiation angle. When the initial phase changes from 360° to 180°, the maximum radiation distribution appears multi peak phenomenon, and the degree of the initial phase angle is different from that when the initial phase changes from 0 to 180 degrees., it shows an antisymmetric variation law. Furthermore, we discuss the process and reason of this phenomenon, which provides a accurate observation time and theoretical basis for high energy electron radiation experiment.
线偏振高斯激光脉冲下初始相位对电子辐射的影响及其机理
本文通过数值模拟研究了紧聚焦高斯激光脉冲中初始相位对非线性汤姆逊散射的影响。首次发现初始相位与最大辐射角不同步。当初始相位从360°变化到180°时,最大辐射分布出现多峰现象,且初始相位角度的变化程度与初始相位从0°变化到180°时不同。时,它表现出反对称变分规律。进一步讨论了这一现象产生的过程和原因,为高能电子辐射实验提供了准确的观测时间和理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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