论文标题

关于Fanaroff-Riley级I类的减速:恒星风的磁化喷气式

On the deceleration of Fanaroff-Riley Class I jets: mass loading of magnetized jets by stellar winds

论文作者

Anglés-Castillo, Andreu, Perucho, Manel, Martí, José María, Laing, Robert A.

论文摘要

在本文中,我们提出了稳态的RMHD模拟,其中包括研究喷气减速过程的质量负载项。质量负载模拟了从主机银河中恒星风中注入质子 - 电子等离子体,最初是配对等离子喷头的,平均恒星质量损坏从$ 10^{ - 14} $到$ 10^{ - 9}}}空间喷射演化覆盖$ \ sim 500 \,{\ rm pc} $从喷气喷嘴的10〜PC中的网格注入中,从射流喷嘴中。我们的仿真使用状态的相对论气体方程和环境介质的压力曲线。我们将这些仿真与以前的相对论,非磁性喷气机的动态模拟进行了比较。我们的结果表明,环形磁场可以防止快速射流膨胀以及随后通过磁张力嵌入进一步的恒星。从这个意义上讲,磁场避免了失控的减速过程。此外,当质量载荷足够大以增加射流密度并产生快速的,差异的射流膨胀时,磁能通量转化为动能通量(即磁加速度),有助于延迟减速过程相对于非磁性射流的JET。我们得出的结论是,椭圆星系中典型的恒星种群无法解释经典周五射线星系中的喷气减速。但是,我们观察到射流组成,热力学参数和沿其演化的能量耗散的重大变化,即使对于中等的质量载荷值也是如此。

In this paper we present steady-state RMHD simulations that include a mass-load term to study the process of jet deceleration. The mass-load mimics the injection of a proton-electron plasma from stellar winds within the host galaxy into initially pair plasma jets, with mean stellar mass-losses ranging from $10^{-14}$ to $10^{-9}\,{M_\odot\,yr^{-1}}$. The spatial jet evolution covers $\sim 500\,{\rm pc}$ from jet injection in the grid at 10~pc from the jet nozzle. Our simulations use a relativistic gas equation of state and a pressure profile for the ambient medium. We compare these simulations with previous dynamical simulations of relativistic, non-magnetised jets. Our results show that toroidal magnetic fields can prevent fast jet expansion and the subsequent embedding of further stars via magnetic tension. In this sense, magnetic fields avoid a runaway deceleration process. Furthermore, when the mass-load is large enough to increase the jet density and produce fast, differential jet expansion, the conversion of magnetic energy flux into kinetic energy flux (i.e., magnetic acceleration), helps to delay the deceleration process with respect to non-magnetised jets. We conclude that the typical stellar population in elliptical galaxies cannot explain jet deceleration in classical FRI radio galaxies. However, we observe a significant change in the jet composition, thermodynamical parameters and energy dissipation along its evolution, even for moderate values of the mass-load.

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