论文标题

修饰重力中常规黑洞周围的测试颗粒的动力学

Dynamics of test particles around regular black holes in modified gravity

论文作者

Rayimbaev, Javlon, Tadjimuratov, Pulat, Abdujabbarov, Ahmadjon, Ahmedov, Bobomurat, Khudoyberdieva, Malika

论文摘要

在这项工作中,我们介绍了事件范围的详细分析和时空的曲率特性,以改性重力在所谓的常规MOG黑洞中进行常规黑洞。还探索了浸入渐近均匀均匀磁场的常规MOG黑洞的近距离环境中中性,电荷和磁性颗粒的运动。通过对中性测试粒子运动运动的研究,我们获得了MOG参数的正(负)值模仿旋转的Kerr黑洞的自旋,从而为粒子的最内部稳定稳定的Pro级(逆行)轨道提供了相同的值。已经计算了Novikov-Thorne模型从积聚磁盘中释放能量的效率,并表明该效率与MOG参数$α$的增加是线性成正比的,并且在MOG参数$α__{\ rm cr} $的关键极限值下超过15 \%。对带电颗粒动力学的研究表明,粒子的最内向稳定的圆形轨道(ISCO)随着MOG参数的增加而增加,而回旋频率的增加则导致磁相互作用导致后者的减少。此外,磁偶极子的动力学表明,MOG的增加和磁耦合参数会导致内部半径的增加以及由磁化颗粒组成的积聚磁盘的宽度。最后,我们专注于显示磁耦合参数的值范围,从而导致轨道稳定。

In the work, we have presented detailed analyses of the event horizon and curvature properties of spacetime around a regular black hole in modified gravity so-called regular MOG black hole. The motion of neutral, electrically charged and magnetized particles with magnetic dipole moment, in the close environment of the regular MOG black hole immersed in an external asymptotically uniform magnetic field has been also explored. Through the study on the motion of the neutral test particle, we have obtained that the positive (negative) values of the MOG parameter mimic the spin of a rotating Kerr black hole giving the same values for innermost stable pro-grade (retrograde) orbits of the particles in the range of the spin parameter $a/M \in(-0.4125, \ 0.6946)$. The efficiency of energy release from the accretion disk by the Novikov-Thorne model has been calculated and shown that the efficiency is linearly proportional to the increase of the MOG parameter $α$, and exceeds up to 15 \% at the critical limiting value of the MOG parameter $α_{\rm cr}$. The study of the charged particles dynamics has shown that innermost stable circular orbits (ISCOs) of the particle increases with the increase of the MOG parameter, while the increase of cyclotron frequency being responsible to the magnetic interaction causes the decrease of the latter. Moreover, the dynamics of magnetic dipoles has shown that the increase of the MOG and the magnetic coupling parameters lead to an increase of the inner radius and the width of the accretion disk consisting of magnetized particles. Finally, we have focused on showing the range of values of the magnetic coupling parameter causing the orbits to be stable.

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