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Charged particle dynamics in the vicinity of black hole from vector-tensor theory of gravity immersed in an external magnetic field

机译:基于矢量张量引力理论的黑洞附近带电粒子动力学沉浸在外部磁场中

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摘要

The dynamics of charged particle in the vicinity of event horizon of a rotating charged black hole (BH) with gravitomagnetic charge from a class of vector-tensor theories of modified gravity immersed in an axially symmetric magnetic field (Bfield) has been studied. The presence of Bfield reduces the radii of innermost stable circular orbit (ISCO) of charged particle and the opposite phenomenon occurs due the parameterβwhich describes the deviation of modified gravity considered here from the usual Einstein-Maxwell gravity also acts to increase the radius of ISCO. Angular momentum also plays the role regarding the motion of particle which implies that larger the angular momentum easier for a particle to escape. We study the stability of orbits using Lyapunov characteristic exponent which implies more stability in the presence of Bfield. Generally, in the presence of Bfield it is easier for a particle to escape than its absence. We find twist in the trajectories of charged particles close to event horizon due to spin of BH in the presence of Bfield and there is no twist in the absence of it. Finally, we comment on possible utilization of our findings for the relativistic jets and magnetohydrodynamical out flows.
机译:从一类修正的重力矢量张量理论中,将重力磁化的旋转带电黑洞(BH)的事件视界附近的视界动力学研究到了轴对称磁场(Bfield)中。 B场的存在减小了带电粒子的最内层稳定圆形轨道(ISCO)的半径,并且由于参数β(此处描述的修正重力与通常的爱因斯坦-麦克斯韦重力的偏差)而发生相反的现象,这也增加了ISCO的半径。角动量在粒子运动方面也起着作用,这意味着较大的角动量更容易使粒子逃逸。我们使用Lyapunov特征指数研究了轨道的稳定性,这表明在存在Bfield的情况下具有更高的稳定性。通常,在存在Bfield的情况下,粒子比不存在时更容易逃逸。我们发现,由于在B场存在下BH的自旋,带电粒子的轨迹接近事件视界而发生了扭曲,而在没有Bfield的情况下则没有扭曲。最后,我们评论了相对论射流和磁流体动力流出的可能利用我们的发现。

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