论文标题

根尖围在黑洞周围的暗物质分布中移动

Periapsis shifts in dark matter distribution around a black hole

论文作者

Igata, Takahisa, Harada, Tomohiro, Saida, Hiromi, Takamori, Yohsuke

论文摘要

我们认为,在黑洞周围的静态云上,恒星的束缚轨道的围绕轨道移动。背景时空是由Schwarzschild黑洞构建的,该黑洞被静态和球形的对称自我增殖系统包围,该系统满足所有标准能量条件,并物理地对非骨折黑洞周围的暗物质分布的重力作用。使用恒星的几乎圆形的轨道,我们获得了一个简单的进动率的公式。该公式明确表明,预动力率取决于从常规的一般性相关效应和负面贡献(即,逆行转移)与局部物质密度相关的正面贡献(即,术转移)。这种轨道的四个量(即轨道移位角,径向振荡周期,红移和映射到天体球的恒星位置)确定背景模型函数的局部值。此外,我们不仅评估了几个特定模型中几乎圆形结合轨道的进动率,而且还模拟了具有较大偏心率的几个结合轨道及其脑膜移动的轨道。本精确的模型表明,逆行进动并不意味着任何异国情调的中心物体,例如裸奇异物或虫洞,而只是仅仅是在黑洞周围的星轨道上存在重要的物质的重要能量密度。

We consider the periapsis shifts of bound orbits of stars on static clouds around a black hole. The background spacetime is constructed from a Schwarzschild black hole surrounded by a static and spherically symmetric self-gravitating system of massive particles, which satisfies all the standard energy conditions and physically models the gravitational effect of dark matter distribution around a nonrotating black hole. Using nearly circular bound orbits of stars, we obtain a simple formula for the precession rate. This formula explicitly shows that the precession rate is determined by a positive contribution (i.e., a prograde shift) from the conventional general-relativistic effect and a negative contribution (i.e., a retrograde shift) from the local matter density. The four quantities for such an orbit (i.e., the orbital shift angle, the radial oscillation period, the redshift, and the star position mapped onto the celestial sphere) determine the local values of the background model functions. Furthermore, we not only evaluate the precession rate of nearly circular bound orbits in several specific models but also simulate several bound orbits with large eccentricity and their periapsis shifts. The present exact model demonstrates that the retrograde precession does not mean any exotic central objects such as naked singularities or wormholes but simply the existence of significant energy density of matters on the star orbit around the black hole.

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