自引力标量场结构附近的测地线运动

I. Potashov, Ju. V. Tchemarina, A. Tsirulev
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引用次数: 0

摘要

研究了在自引力实标量场支持下的黑洞和裸奇点静态球对称时空中中性测试粒子的测地线运动。标量场应该是用来模拟围绕着一些强引力物体的暗物质,比如我们银河系的中心。类时测地线和零测地线非常接近这种构型的中心,它们的行为关键取决于时空的类型。事实证明,标量场黑洞,类似于史瓦西黑洞,具有最内层的稳定圆形轨道和(不稳定的)光子球,但它们的半径总是小于相同质量的史瓦西黑洞的相应半径;而且,这些半径可以任意小。而标量场裸奇点既没有最内层稳定的圆轨道,也没有光子球。相反,这种构型在其原点周围有一个测试粒子的球形外壳,并始终保持准静态平衡。我们还证明了相同质量的标量场裸奇点和标量场黑洞中心附近的零测地线的特征性质是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geodesic motion near self-gravitating scalar field configurations
We study the geodesics motion of neutral test particles in the static spherically symmetric spacetimes of black holes and naked singularities supported by a selfgravitating real scalar field. The scalar field is supposed to model dark matter surrounding some strongly gravitating object such as the centre of our Galaxy. The behaviour of timelike and null geodesics very close to the centre of such a configuration crucially depends on the type of spacetime. It turns out that a scalar field black hole, analogously to a Schwarzschild black hole, has the innermost stable circular orbit and the (unstable) photon sphere, but their radii are always less than the corresponding ones for the Schwarzschild black hole of the same mass; moreover, these radii can be arbitrarily small. In contrast, a scalar field naked singularity has neither the innermost stable circular orbit nor the photon sphere. Instead, such a configuration has a spherical shell of test particles surrounding its origin and remaining in quasistatic equilibrium all the time. We also show that the characteristic properties of null geodesics near the centres of a scalar field naked singularity and a scalar field black hole of the same mass are qualitatively different.
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CiteScore
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