论文标题
黑洞被爱因斯坦簇包围,作为暗物质流体的模型
Black holes surrounded by Einstein clusters as models of dark matter fluid
论文作者
论文摘要
我们构建了一类新型的球形对称性和渐近平坦的黑洞和裸露的奇异性,周围环绕着各向异性暗物质流体,并具有$ p_t =ωρ$的状态方程(EOS)。我们假设暗物质是由围绕银河中心的超质量黑洞绕的弱相互作用的颗粒制成的,而暗物质晕是通过仅具有切向压力的爱因斯坦簇形成的。在距黑洞的较大距离内,我们获得了恒定的扁平曲线,上限为暗物质状态参数$ω\ lysesim 10^{ - 7} $。为此,我们还使用旋转和辐射粒子检查了黑洞/裸奇异性,银河光偏转的暗物质流体的能量条件,银河系的偏转以及sgr的阴影图像。对于黑洞的情况,我们发现暗物质流体对阴影半径的影响很小,特别是黑洞的角度半径显示出$ 10^{ - 4}μ$ Arcsec的订单,与真空解决方案相比。对于裸露的奇异性,与黑洞外壳相比,我们获得的阴影半径明显较小。最后,我们研究了在暗物质效果下,S2星轨道围绕SGR的$^\ star $黑洞的稳定性。有人认为,S2 Star Orbit的运动对于值$ω\ Lessim 10^{ - 7} $稳定,但是$ω$的进一步增加会导致不稳定的轨道。使用观测结果,用于EHT报告的SGR A $^\ Star $的阴影图像,以及从恒定平坦曲线中发现的$ω$的最严格约束,我们表明黑洞模型与数据一致,而我们的模型中的裸奇异性可以被排除。
We construct a novel class of spherically symmetric and asymptotically flat black holes and naked singularities surrounded by anisotropic dark matter fluid with the equation of state (EoS) of the form $P_t=ωρ$. We assume that dark matter is made of weakly interacting particles orbiting around the supermassive black hole in the galactic center and the dark matter halo is formed by means of Einstein clusters having only tangential pressure. In the large distance from the black hole, we obtain the constant flat curve with the upper bound for the dark matter state parameter $ω\lesssim 10^{-7}$. To this end, we also check the energy conditions of the dark matter fluid outside the black hole/naked singularity, the deflection of light by the galaxy, and the shadow images of the Sgr A$^\star$ black hole using the rotating and radiating particles. For the black hole case, we find that the effect of dark matter fluid on the shadow radius is small, in particular the angular radius of the black hole is shown to increase by the order $10^{-4} μ$arcsec compared to the vacuum solution. For the naked singularity we obtain significantly smaller shadow radius compared to the black hole case. Finally, we study the stability of the S2 star orbit around Sgr A$^\star$ black hole under dark matter effects. It is argued that the motion of S2 star orbit is stable for values $ω\lesssim 10^{-7}$, however further increase of $ω$ leads to unstable orbits. Using the observational result for the shadow images of the Sgr A$^\star$ reported by the EHT along with the tightest constraint for $ω$ found from the constant flat curve, we show that the black hole model is consistent with the data while the naked singularity in our model can be ruled out.