论文标题

剪切流中的粒子加速度:相对论MHD射流模拟中湍流棘鞘结构的自生

Particle acceleration in shearing flows: the self-generation of turbulent spine-sheath structures in relativistic MHD jet simulations

论文作者

Wang, Jie-Shuang, Reville, Brian, Mizuno, Yosuke, Rieger, Frank M., Aharonian, Felix A.

论文摘要

X射线观察几个千帕斯克尺度的天外喷射有利于同步加速器起源。发射电子的短冷却时间需要将电子的分布加速至子PEV能量。在上一篇论文中,我们发现这可以通过剪切加速度模型来自言自语,在剪切加速度模型中,粒子被加速以产生幂律光谱,并主要由频谱谱图确定速度曲线和湍流光谱。在本文中,我们执行3D相对论磁氢动力学模拟,以研究脊柱鞘结构的形成以及相对论射流传播到静态茧中的湍流的发展。我们探索不同的脊柱速度和磁场轮廓,其中选择值匹配典型的Fanaroff-Riley I/II型喷气机。我们发现,在所有情况下,在脊柱的界面和茧的界面上都会产生鞘,这主要是由于开尔文 - 霍尔姆霍尔兹不稳定性引起的。鞘中的大型速度曲线接近线性。湍流在脊柱和鞘中都会发展,其湍流速度光谱与kolmogorov缩放一致。探索了对剪切颗粒加速度的影响,重点是粒子光谱指数。

X-ray observations of several kiloparsec-scale extragalactic jets favour a synchrotron origin. The short cooling times of the emitting electrons requires distributed acceleration of electrons up to sub-PeV energies. In a previous paper, we found that this can be self-consistently explained by a shear acceleration model, where particles are accelerated to produce power-law spectra with a spectral index being determined mainly by the velocity profile and turbulence spectrum. In this paper, we perform 3D relativistic magneto-hydrodynamic simulations to investigate the formation of a spine-sheath structure and the development of turbulence for a relativistic jet propagating into a static cocoon. We explore different spine velocities and magnetic field profiles with values being chosen to match typical Fanaroff-Riley type I/II jets. We find that in all cases a sheath is generated on the interface of the spine and the cocoon mainly due to the Kelvin-Helmholtz instability. The large scale velocity profile in the sheath is close to linear. Turbulence develops in both the spine and the sheath, with a turbulent velocity spectrum consistent with Kolmogorov-scaling. The implications for shear particle acceleration are explored, with a focus on the particle spectral index.

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