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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >New mechanism of acceleration of particles by stellar black holes
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New mechanism of acceleration of particles by stellar black holes

机译:恒星黑洞加速粒子的新机制

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摘要

In this paper, we study the efficiency of particle acceleration in the magnetospheres of stellar mass black holes. For this purpose, we consider the linearized set of the Euler equation, continuity equation and Poisson equation, respectively. After introducing the varying relativistic centrifugal force, we show that the charge separation undergoes the parametric instability, leading to generation of centrifugally-excited Langmuir waves. It is shown that these waves, via the Langmuir collapse damp by means of the Landau damping, as a result, energy transfers to particles accelerating them to energies of the order of 10(16) eV.
机译:在本文中,我们研究了恒星块状黑洞磁光液中粒子加速度的效率。 为此目的,我们考虑分别是欧拉方程,连续性方程和泊松方程的线性化集。 在引入不同的相对论离心力之后,我们表明电荷分离经历了参数不稳定,导致生成离心激发的朗马尔波。 结果表明,这些波通过Langmuir崩溃潮湿透过Landau阻尼,因此能量转移到加速它们的颗粒,以10(16)EV的顺序的能量。

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