论文标题

超层流等离子体电流细丝不稳定性中的电子极化

Electron polarization in ultrarelativistic plasma current filamentation instabilities

论文作者

Gong, Zheng, Hatsagortsyan, Karen Z., Keitel, Christoph H.

论文摘要

研究了撞击过度血浆上的超层析电子束的等离子体电流细丝,重点是辐射诱导的电子极化。粒子中的模拟提供了当前细丝的三种不同机制的分类和深入分析,即正常细丝,异常细丝和淬火方案。我们表明,电子辐射极化在动量空间的不稳定性沿着方位角方向上出现,这在整个方案中都有很大变化。我们提出了一个直观的哈密顿模型,以追踪电子极化动力学的起源。特别是,我们辨别血浆丝的非线性横向运动的作用,血浆丝诱导辐射自旋流中的不对称性,从而产生电子极化的积累。我们的结果打破了常规看法,即准对称场对产生辐射自旋极化束的效率低下,这表明电子极化是实验室和天体物理等离子体不稳定性的新信息来源的潜力。

Plasma current filamentation of an ultrarelativistic electron beam impinging on an overdense plasma is investigated, with emphasis on radiation-induced electron polarization. Particle-in-cell simulations provide the classification and in-depth analysis of three different regimes of the current filaments, namely, the normal filament, abnormal filament, and quenching regimes. We show that electron radiative polarization emerges during the instability along the azimuthal direction in the momentum space, which significantly varies across the regimes. We put forward an intuitive Hamiltonian model to trace the origin of the electron polarization dynamics. In particular, we discern the role of nonlinear transverse motion of plasma filaments, which induces asymmetry in radiative spin flips, yielding an accumulation of electron polarization. Our results break the conventional perception that quasi-symmetric fields are inefficient for generating radiative spin-polarized beams, suggesting the potential of electron polarization as a source of new information on laboratory and astrophysical plasma instabilities.

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