论文标题

丝的饱和不稳定性和分散量的快速无线电爆发度量

Saturation of the filamentation instability and dispersion measure of Fast Radio Bursts

论文作者

Sobacchi, Emanuele, Lyubarsky, Yuri, Beloborodov, Andrei M., Sironi, Lorenzo, Iwamoto, Masanori

论文摘要

非线性效应对于源附近的快速无线电爆发(FRB)的传播至关重要。我们研究了磁铁相对论风中FRB的细丝,通常被称为最天然的FRB祖细胞。由于细丝,粒子密度和辐射强度沿风磁场的方向发展了强梯度。当等离子体压力平衡浮动力时,达到稳态。在如此稳定的状态下,颗粒被限制在定期间隔的薄板上,并且电磁波在波导中像它们之间传播。我们表明:(i)分散关系类似于在初始均匀等离子体中,但是有效的等离子体频率是由板的分离确定的,而不是直接由平均粒子密度直接取决于。 (ii)相对论磁场对FRB的分散度的贡献可能比以前想象的要大几个数量级。风的分散度度量取决于单个爆发的特性(例如光度),因此可以在不同的爆发之间发生显着变化,而不是重复FRB。 (iii)诱导的康普顿散射被抑制,因为大多数辐射在近乎真空区域都繁殖。

Nonlinear effects are crucial for the propagation of Fast Radio Bursts (FRBs) near the source. We study the filamentation of FRBs in the relativistic winds of magnetars, which are commonly invoked as the most natural FRB progenitors. As a result of filamentation, the particle number density and the radiation intensity develop strong gradients along the direction of the wind magnetic field. A steady state is reached when the plasma pressure balances the ponderomotive force. In such a steady state, particles are confined into periodically spaced thin sheets, and electromagnetic waves propagate between them as in a waveguide. We show that: (i) The dispersion relation resembles that in the initial homogeneous plasma, but the effective plasma frequency is determined by the separation of the sheets, not directly by the mean particle density. (ii) The contribution of relativistic magnetar winds to the dispersion measure of FRBs could be several orders of magnitude larger than previously thought. The dispersion measure of the wind depends on the properties of individual bursts (e.g. the luminosity), and therefore can change significantly among different bursts from repeating FRBs. (iii) Induced Compton scattering is suppressed because most of the radiation propagates in near vacuum regions.

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