论文标题
恒星对黑洞周围暗物质尖峰的影响:两个处理的故事
The Effect of Stars on the Dark Matter Spike Around a Black Hole: A Tale of Two Treatments
论文作者
论文摘要
我们重新审视了引力散射恒星在建立无碰撞暗物质(DM)周围围绕巨大黑洞(BH)的稳态分布中发挥作用的作用。这是一个具有物理上有趣的问题,具有可能可观察到的特征,例如在密度尖峰中dm an灭的$γ-$射线。该系统是比较两种不同的动力学方法的实验室,两者都已被广泛使用:Fokker-Planck处理和两组分量的传导流体处理。在我们的Fokker-Planck分析中,我们扩展了先前的分析模型,以说明DM颗粒的非零通量到BH中,以及由于相对论效应,或者由于相对论效应而在BH附近的分布函数中的截止,或者进一步可能是DM歼灭。在我们的两流体分析中,经过近似分析处理,我们将方程式重现为“加热的债券积聚”问题,并在数值上求解方程而无需近似。尽管Fokker-Planck和两流体方法基本上产生的DM密度和速度分散曲线从峰值内部的边界上移开,但还有其他差异,尤其是确定DM积聚速率。我们讨论了两种治疗方法的局限性,包括各向同性速度分散的假设。
We revisit the role that gravitational scattering off stars plays in establishing the steady-state distribution of collisionless dark matter (DM) around a massive black hole (BH). This is a physically interesting problem that has potentially observable signatures, such as $γ-$rays from DM annihilation in a density spike. The system serves as a laboratory for comparing two different dynamical approaches, both of which have been widely used: a Fokker-Planck treatment and a two-component conduction fluid treatment. In our Fokker-Planck analysis we extend a previous analytic model to account for a nonzero flux of DM particles into the BH, as well as a cut-off in the distribution function near the BH due to relativistic effects or, further out, possible DM annihilation. In our two-fluid analysis, following an approximate analytic treatment, we recast the equations as a "heated Bondi accretion" problem and solve the equations numerically without approximation. While both the Fokker-Planck and two-fluid methods yield basically the same DM density and velocity dispersion profiles away from the boundaries in the spike interior, there are other differences, especially the determination of the DM accretion rate. We discuss limitations of the two treatments, including the assumption of an isotropic velocity dispersion.