论文标题
快速无线电通过双重相对论等离子体传播
Propagation of a fast radio burst through a birefringent relativistic plasma
论文作者
论文摘要
对脉冲天体物理无线电发射的研究使得可以探测发射源与地球之间的中间血浆。在冷电子离子等离子体中,圆形传播波模式主要改变了线性极化平面,该线性偏振平面随发射频率的逆方面缩放。在相对论等离子体中,波模式是椭圆极化的,可以将线性极化的发射转换为圆形,反之亦然。快速无线电爆发(FRB)不仅可以研究播层间培养基的电子离子等离子体,而且还可以研究产生这些强烈脉冲的极端磁含量培养基。在这里,我们报告了FRB 20201124a源的重复爆发的偏振分析。与该来源或迄今为止发现的任何其他FRB不同,该爆发显示出显着的频率依赖性圆两极化的组件。我们使用现象学通用法拉第旋转框架对圆极化的频率依赖性进行建模。我们发现,爆发中观察到的圆极化可以通过沿着祖细胞的视线沿相对论的等离子体的最初线性极化爆发信号传播来充分解释。
The study of impulsive astrophysical radio emission makes it possible to probe the intervening plasma between the emission source and the Earth. In cold electron-ion plasmas, the circular propagating wave modes primarily alter the linear polarization plane that scales with the inverse-square of the emission frequency. In relativistic plasmas, the wave modes are elliptically polarized, and it is possible to convert linearly polarized emission into circular and vice versa. Fast radio bursts (FRBs) enable the study of not only the electron-ion plasma of the intergalactic medium but potentially the extreme magneto-ionic medium in which these intense pulses are produced. Here we report on the polarimetric analysis of a repeat burst from the FRB 20201124A source. The burst displayed a significant frequency-dependent circularly polarized component, unlike other bursts from this source or any other FRB found to date. We model the frequency dependence of the circular polarization using a phenomenological generalized Faraday rotation framework. We find that the observed circular polarization in the burst can be adequately explained by the propagation of an initially linearly polarised burst signal through a relativistic plasma along the line of sight from the progenitor.