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The shocks during the accretion of an ultrarelativistic supersonic gas onto a rotating black hole

机译:在旋转的黑洞上吸收超微化的超音速气体过程中的冲击

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In this work, we track the evolution of an ultrarelativistic fluid onto a Kerr black hole, on the equatorial plane. In this treatment, we consider the limit where the rest mass density is neglected, that is, the approximation is valid in the regime where the internal energy dominates over the rest mass density. We particularly concentrate in the case of a gas with Γ = 4/3, which corresponds to a radiation fluid. We show, as in several cases, that a shock cone appears when the asymptotic velocity of the fluid is larger than the asymptotic relativistic sound speed of the gas. On the other hand, in order to show the system approaches to steady state, we calculate the accreted total energy rate on a spherical surface. Finally, we also show the gas distribution and various of its properties.
机译:在这项工作中,我们跟踪赤道平面上的克里尔黑洞上的超吸液的演变。在这种处理中,我们考虑忽略静止质量密度的极限,即近似在内部能量在其余质量密度上占主导地位的状态。我们特别集中在具有γ= 4/3的气体的情况下,其对应于辐射流体。如在几种情况下,我们展示了当流体的渐近速度大于气体的渐近相对论的渐近声速时出现冲击锥。另一方面,为了显示系统稳态的方法,我们计算球面上的容量的总能量率。最后,我们还显示了天然气分布和各种性质。

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