引力以太黑洞周围的测试粒子和准周期振荡

IF 3.2 Q2 ASTRONOMY & ASTROPHYSICS
Galaxies Pub Date : 2023-09-01 DOI:10.3390/galaxies11050095
J. Rayimbaev, Farrux Abdulxamidov, Sardor Tojiev, A. Abdujabbarov, Farhod Holmurodov
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引用次数: 0

摘要

本文致力于在引力以太模型的框架内分析黑洞附近测试粒子的动力学。首先,我们通过分析曲率标量来探索时空的结构。然后,我们使用Hamilton-Jacobi方程研究了黑洞周围的粒子动力学。研究了以太对测试粒子绕黑洞径向运动有效势的影响。研究了最内层稳定圆轨道(ISCO)对以太参数的依赖关系。我们还考虑了在以太存在的情况下黑洞附近的粒子碰撞,并研究了在以太存在的情况下测试粒子绕黑洞轨道运动的基本频率。进一步,我们将所得结果应用于黑洞附近双峰准周期振荡(QPOs)的上、低频分析。最后,利用QPO的观测数据,结合理论和数值结果得到了模型参数的约束条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Test Particles and Quasiperiodic Oscillations around Gravitational Aether Black Holes
This paper is devoted to the analysis of the dynamics of test particles in the vicinity of a black hole within the framework of a gravitational aether model. First, we explored the structure of spacetime by analyzing the curvature scalars. Then, we studied particle dynamics around a black hole using the Hamilton–Jacobi equation.The influence of the aether on the effective potential of the radial motion of test particles around the black hole has been investigated. The dependence of the innermost stable circular orbits (ISCO) on the aether parameter has also been investigated. We also considered particle collision near the black hole in the presence of aether, and studied the fundamental frequencies of the orbital motion of the test particles around the black hole in the presence of aether. Further, we applied the obtained results to the analysis of the upper and lower frequencies of twin-peaked quasiperiodic oscillations (QPOs) occurring near black holes. Finally, we use theoretical and numerical results to obtain constraints on model parameters using observation data in QPO.
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来源期刊
Galaxies
Galaxies Physics and Astronomy-Astronomy and Astrophysics
CiteScore
4.90
自引率
12.00%
发文量
100
审稿时长
11 weeks
期刊介绍: Es una revista internacional de acceso abierto revisada por pares que proporciona un foro avanzado para estudios relacionados con astronomía, astrofísica y cosmología. Areas temáticas Astronomía Astrofísica Cosmología Astronomía observacional: radio, infrarrojo, óptico, rayos X, neutrino, etc. Ciencia planetaria Equipos y tecnologías de astronomía. Ingeniería Aeroespacial Análisis de datos astronómicos. Astroquímica y Astrobiología. Arqueoastronomía Historia de la astronomía y cosmología. Problemas filosóficos en cosmología.
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