论文标题

快速无线电爆发随着强波与环境介质相互作用

Fast radio bursts as strong waves interacting with ambient medium

论文作者

Yang, Yuan-Pei, Zhang, Bing

论文摘要

快速无线电爆发(FRB)是神秘的无线电瞬变,其物理起源仍然未知。在FRB源附近的几个天文单元中,电磁波的电场是如此之大,以至于电子振荡速度变得相对论,这使经典的汤姆森散射理论和线性等离子体理论无效。我们讨论了FRB,因为具有电子运动性能和等离子体特性的强波与环境介质相互作用。确定了几个新颖的功能。 1。对于散射光子,汤森散射的横截面显着增强。 2。另一方面,由于强波中的非线性等离子体特性,近源等离子体更透明,并且对观察到的值具有较小的有效色散度量(DM)贡献。对于重复的FRB源,较明亮的爆发将会由近源等离子体造成较小的DM。 3。辐射束在密集的血浆中经历相对论自我关注,自我关注(或挤压)的程度取决于等离子体密度。这种挤压效果会影响FRB的直角和真实事件率。 4。当FRB在附近的环境等离子体中繁殖时,血浆中的韦克菲尔德波将由FRB的浮动力产生,并在环境介质中加速电子。但是,这种效果太弱了,无法在观察上有趣。

Fast radio bursts (FRBs) are mysterious radio transients whose physical origin is still unknown. Within a few astronomical units near an FRB source, the electric field of the electromagnetic wave is so large that the electron oscillation velocity becomes relativistic, which makes the classical Thomson scattering theory and the linear plasma theory invalid. We discuss FRBs as strong waves interacting with the ambient medium, in terms of both electron motion properties and plasma properties. Several novel features are identified. 1. The cross section of Thomson scattering is significantly enhanced for the scattering photons. 2. On the other hand, because of the nonlinear plasma properties in strong waves, the near-source plasma is more transparent and has a smaller effective dispersion measure (DM) contribution to the observed value. For a repeating FRB source, the brighter bursts would have somewhat smaller DMs contributed by the near-source plasma. 3. The radiation beam undergoes relativistic self-focusing in a dense plasma, the degree of self-focusing (or squeezing) depends on the plasma density. Such a squeezing effect would affect the collimation angle and the true event rate of FRBs. 4. When an FRB propagates in a nearby ambient plasma, a wakefield wave in the plasma will be generated by the ponderomotive force of the FRB and accelerates electrons in the ambient medium. However, such an effect is too weak to be observationally interesting.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源