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The accretion of dark energy onto a black hole

机译:暗能量在黑洞上的积聚

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The stationary, spherically symmetric accretion of dark energy onto a Schwarzschild black hole is considered in terms of relativistic hydrodynamics. The approximation of an ideal fluid is used to model the dark energy. General expressions are derived for the accretion rate of an ideal fluid with an arbitrary equation of state p = p(rho) onto a black hole. The black hole mass was found to decrease for the accretion of phantom energy. The accretion process is studied in detail for two dark energy models that admit an analytical solution: a model with a linear equation of state, p = alpha(rho - rho(0)) , and a Chaplygin gas. For one of the special cases of a linear equation of state, an analytical expression is derived for the accretion rate of dark energy onto a moving and rotating black hole. The masses of all black holes are shown to approach zero in cosmological models with phantom energy in which the Big Rip scenario is realized. (C) 2005 Pleiades Publishing, Inc.
机译:从相对论流体力学的角度考虑了暗能量在Schwarzschild黑洞上的平稳球形对称增生。理想流体的近似值用于模拟暗能量。推导了具有状态方程p = p(rho)的任意流体在黑洞上的吸积率的一般表达式。发现黑洞质量随着幻像能量的增加而减少。对于两个可以接受解析解的暗能量模型,对吸积过程进行了详细研究:一个具有线性状态方程p = alpha(rho-rho(0))和Chaplygin气体的模型。对于线性状态方程的一种特殊情况,导出了一个解析表达式,用于表示暗能量在移动和旋转的黑洞上的吸积率。在具有幻影能量的宇宙学模型中,所有黑洞的质量都显示为接近零,在该模型中,实现了大裂口情景。 (C)2005年Pleiades Publishing,Inc.

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