论文标题

浸入外部磁场的圆柱黑色孔周围的带电和磁性颗粒的动力学

Dynamics of charged and magnetized particles around cylindrical black holes immersed in external magnetic field

论文作者

Javlon, Rayimbaev, Alexandra, Demyanova, Camci, Ugur, Abdujabbarov, Ahmadjon, Ahmedov, Bobomurat

论文摘要

本文研究了电气和磁充电的粒子的运动和加速度,该粒子在与Z轴平行的外部渐近均匀磁场的存在下围绕圆柱黑洞旋转。基本上,工作考虑了围绕中心物体旋转的颗粒的圆形轨道,并研究了最内部稳定的圆形轨道(ISCO)对所谓的磁耦合参数的依赖性,这些磁耦合参数负责外部磁场与磁性和磁性颗粒之间的相互作用。还表明,ISCO半径随着磁化参数的增加而减小。因此,还研究了浸入外部磁场的圆柱黑洞周围的磁化颗粒的碰撞,并显示磁场可以用作非旋转圆柱黑色孔的粒子加速器。

This paper investigates the motion and acceleration of a particle that is electrically and magnetically charged, which rotates around a cylindrical black hole in the presence of an external asymptotically uniform magnetic field parallel to the z axis. Basically, the work considers the circular orbits of particles rotating around the central object and studies the dependence of the most internal stable circular orbits (ISCO) on the so-called magnetic coupling parameters, which are responsible for the interaction between the external magnetic field and magnetized and charged particles. It is also shown that the ISCO radius decreases with increasing magnetized parameter. Therefore, collisions of magnetized particles around a cylindrical black hole immersed in an external magnetic field were also studied, and it was shown that the magnetic field can act as a particle accelerator around non-rotating cylindrical black holes.

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