论文标题

超局势激光脉冲中超层流电子的辐射极化的随机性

Stochasticity in radiative polarization of ultrarelativistic electrons in an ultrastrong laser pulse

论文作者

Guo, Ren-Tong, Wang, Yu, Shaisultanov, Rashid, Wan, Feng, Xu, Zhong-Feng, Chen, Yue-Yue, Hatsagortsyan, Karen Z., Li, Jian-Xing

论文摘要

研究了在量子辐射反应方向上的反向渗透超肌聚焦激光脉冲中,在光子发射过程中,在光子发射过程中的自旋(DE)极化中的随机性效应。我们采用一种蒙特卡洛方法来半经典地描述电子动力学,光子发射以及电子辐射极化量子机械地描述了电子动力学。尽管在后者中,光子发射本质上是随机的,但与新开发的半经典无辐射极化方法相比,我们能够识别其烙印。使用最初的自旋偏振电子束,在去极化度对电子散射角度和电子最终能量(自旋随机扩散)的依赖性中可以看到随机自旋效应。使用最初的非极化电子束,在通过椭圆极化激光脉冲沿传播方向沿传播方向沿繁殖方向分裂为两个相对极化的部件的已知旋转随机性在增强了已知的效果。当前可实现的激光和电子束参数可观察到自旋的随机效应。

Stochasticity effects in the spin (de)polarization of an ultrarelativistic electron beam during photon emissions in a counterpropoagating ultrastrong focused laser pulse in the quantum radiation reaction regime are investigated. We employ a Monte Carlo method to describe the electron dynamics semiclassically, and photon emissions as well as the electron radiative polarization quantum mechanically. While in the latter the photon emission is inherently stochastic, we were able to identify its imprints in comparison with the new developed semiclassical stochasticity-free method of radiative polarization applicable in the quantum regime. With an initially spin-polarized electron beam, the stochastic spin effects are seen in the dependence of the depolarization degree on the electron scattering angle and the electron final energy (spin stochastic diffusion). With an initially unpolarized electron beam, the spin stochasticity is exhibited in enhancing the known effect of splitting of the electron beam along the propagation direction into two oppositely polarized parts by an elliptically polarized laser pulse. The considered stochasticity effects for the spin are observable with currently achievable laser and electron beam parameters.

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