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首页> 外文期刊>The Astrophysical journal >ACCELERATION OF RELATIVISTIC ELECTRONS BY MAGNETOHYDRODYNAMIC TURBULENCE: IMPLICATIONS FOR NON-THERMAL EMISSION FROM BLACK HOLE ACCRETION DISKS
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ACCELERATION OF RELATIVISTIC ELECTRONS BY MAGNETOHYDRODYNAMIC TURBULENCE: IMPLICATIONS FOR NON-THERMAL EMISSION FROM BLACK HOLE ACCRETION DISKS

机译:磁流体动力学湍流加速相对论电子的产生:对黑洞积垢盘非热辐射的影响

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摘要

We use analytic estimates and numerical simulations of test particles interacting with magnetohydrodynamic (MHD) turbulence to show that subsonic MHD turbulence produces efficient second-order Fermi acceleration of relativistic particles. This acceleration is not well described by standard quasi-linear theory but is a consequence of resonance broadening of wave-particle interactions in MHD turbulence. We provide momentum diffusion coefficients that can be used for astrophysical and heliospheric applications and discuss the implications of our results for accretion flows onto black holes. In particular, we show that particle acceleration by subsonic turbulence in radiatively inefficient accretion flows can produce a non-thermal tail in the electron distribution function that is likely important for modeling and interpreting the emission from low-luminosity systems such as Sgr A* and M87.
机译:我们使用与磁流体动力学(MHD)湍流相互作用的测试粒子的解析估计和数值模拟来显示亚音速MHD湍流产生相对论粒子的有效二阶费米加速度。标准的准线性理论并未很好地描述这种加速度,但这是MHD湍流中波粒相互作用的共振加宽的结果。我们提供了可用于天体物理和日球应用的动量扩散系数,并讨论了我们的结果对黑洞上积聚流的影响。特别是,我们表明,在辐射效率低下的积积流中,由亚音速湍流引起的粒子加速会在电子分布函数中产生非热尾,这对于建模和解释低亮度系统(例如Sgr A *和M87)的发射而言可能很重要。

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