论文标题

在爱因斯坦 - 马克斯威尔 - 斯卡尔理论中的黑洞周围的测试粒子运动

Test particle motion around black hole in Einstein-Maxwell-scalar theory

论文作者

Turimov, Bobur, Rayimbayev, Javlon, Abdujabbarov, Ahmadjon, Ahmedov, Bobomurat, Stuchlík, Zdeněk

论文摘要

在本文中,我们使用该理论中的三种不同的黑洞溶液探索了爱因斯坦 - 马克斯韦 - 斯卡尔(EMS)理论的黑洞周围的测试粒子运动。我们首先分析了这些解决方案的时空曲率结构,并显示了两个奇点的存在,第一个是在中心$ r = 0 $。在黑洞时空中,有两个区域除以宇宙参数的临界值$λ_0$。还研究了EMS理论中黑洞周围的光子球,并发现它不取决于宇宙参数$λ$。我们已经分析了黑洞周围最内向的稳定圆形轨道(ISCO),并表明,对于所有溶液,ISCO半径均随着黑洞电荷的增加而减小。我们还研究了在黑洞周围的带电粒子运动,在重力场和库仑电位的存在下,考虑了带电的粒子运动。结果表明,带电颗粒的ISCO半径取决于耦合参数的选定值,这与天体物理黑孔的积聚磁盘的内部边缘的观察矛盾,并且可以用作强大的工具,以排除EMS理论从重力场理论考虑的EMS理论。还研究了通过EMS理论中黑洞周围绕的测试粒子绕的基本频率。最后,作为EMS理论中黑洞解决方案的测试,将ISCO半径与Kerr Black Hole进行了比较,发现Kerr的自旋参数可以模拟高达$ A/M \ simeq 0.936 $。

In this paper, we explore the test particle motion around a black hole in Einstein-Maxwell-scalar (EMS) theory using three different black hole solutions within this theory. We have first analyzed the spacetime curvature structure of these solutions and shown the existence of two singularities and the first one is at the center $r=0$. In black hole spacetime, there are two regions divided by the critical value of the cosmological parameter $λ_0$. The photon sphere around the black hole in EMS theory has also been studied and found that it does not depend on cosmological parameter $λ$. We have analyzed the innermost stable circular orbits (ISCO) around the black hole and shown that for all solutions ISCO radius for neutral particle decreases with the increase of black hole charge. We have also studied the charged particle motion around the black hole where charged particle motion is considered in the presence of the gravitational field and the Coulomb potential. It is shown that ISCO radius for charged particles increases depending on the selected value of the coupling parameter which is in contradiction with observations of the inner edge of the accretion disks of the astrophysical black holes and can be used as a powerful tool to rule out the EMS theory from consideration for the gravitational field theory. It is also studied the fundamental frequencies governed by test particle orbiting around the black hole in EMS theory. Finally, as a test of black hole solution in EMS theory ISCO radii is compared with that in Kerr black hole and found that the spin parameter of Kerr can be mimic up to $a/M\simeq 0.936$.

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