The Orbital Properties of Black Holes: Exploring the Relationship between Orbital Velocity and Distance

Ruben Cornelius Siagian, L. Alfaris, Aldi Cahya Muhammad, Ukta Indra Nyuswantoro, G. T. Rancak
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引用次数: 2

Abstract

This research explores the concept of black holes in the physics of general relativity, including its formation and properties. The study focuses on the relationship between the orbital velocity and orbital distance of objects around a black hole, which is measured in units of the speed of light (c) and kiloparsecs (kpc), respectively. Using observational techniques, the study produces a plot showing the relationship between orbital velocity and orbital distance, which follows Kepler's law modified by the Newtonian theory of gravity and general relativity. The study also highlights the effective potential of particles in orbit around a black hole, which combines the effects of kinetic energy and gravitational potential. The effective potential shows the gravitational and relativistic properties of black holes, such as the photon orbit radius, ISCO, and the spin parameter. The resulting plot demonstrates the characteristics of the Milky Way black hole and how its spin parameter and Schwarzschild radius affect the orbital properties of surrounding particles. The study concludes that the closer the orbital distance is to the black hole, the more the orbital velocity increases, and particles with high spin parameters and small Schwarzschild radii are unlikely to escape the black hole's gravity.
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黑洞的轨道特性:探索轨道速度与距离的关系
本研究探讨了广义相对论中黑洞的概念,包括它的形成和性质。该研究的重点是黑洞周围物体的轨道速度和轨道距离之间的关系,分别以光速(c)和千秒差距(kpc)为单位进行测量。利用观测技术,该研究绘制了一张图表,显示了轨道速度和轨道距离之间的关系,该关系遵循经牛顿引力和广义相对论修正的开普勒定律。该研究还强调了黑洞轨道上粒子的有效势,它结合了动能和引力势的影响。有效势显示了黑洞的引力和相对论性质,如光子轨道半径、ISCO和自旋参数。所得到的图展示了银河系黑洞的特征,以及它的自旋参数和史瓦西半径如何影响周围粒子的轨道性质。研究得出的结论是,轨道距离黑洞越近,轨道速度增加越多,具有高自旋参数和小史瓦西半径的粒子不太可能逃脱黑洞的引力。
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