Relativistic Accretion into a Reissner-Nordström Black Hole Revisited

J. Pacheco
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引用次数: 16

Abstract

The accretion of relativistic and nonrelativistic fluids into a Reissner-Nordstrom black hole is revisited. The position of the critical point, the flow velocity at this point, and the accretion rate are only slightly affected with respect to the Schwarzschild case when the fluid is nonrelativistic. On the contrary, relativistic fluids cross the critical point always subsonically. In this case, the sonic point is located near the event horizon, which is crossed by the fluid with a velocity less than the light speed. The accretion rate of relativistic fluids by a Reissner-Nordstrom black hole is reduced with respect to those estimated for uncharged black holes, being about 60% less for the extreme case (charge-to-mass ratio equal to one).
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相对论吸积形成Reissner-Nordström黑洞
相对论性和非相对论性流体进入Reissner-Nordstrom黑洞的吸积被重新审视。当流体是非相对论性时,临界点的位置、该点的流速和吸积率相对于史瓦西情况只有轻微的影响。相反,相对论性流体总是以亚音速越过临界点。在这种情况下,声波点位于视界附近,流体以小于光速的速度穿过视界。相对于不带电黑洞的吸积速率,赖斯纳-诺德斯特龙黑洞的相对论性流体的吸积速率降低了,在极端情况下(电荷质量比等于1),吸积速率降低了约60%。
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