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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Entropy of cosmological black holes and the generalized second law in the phantom-energy-dominated Universe
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Entropy of cosmological black holes and the generalized second law in the phantom-energy-dominated Universe

机译:幻象主导的宇宙中宇宙学黑洞的熵和广义第二定律

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Adopting the thin layer improved brick wall method, we investigate the thermodynamics of a black hole embedded in a spatially flat FriedmannRobertsonWalker universe. We calculate the temperature and the entropy at every apparent horizon for arbitrary solution of the scale factor. We show that the temperature and entropy display a nontrivial behavior as functions of time. In the case of black holes immersed in a universe driven by phantom energy, we show that for specific ranges of the equation-of-state parameter and apparent horizons the entropy is compatible with the D-bound conjecture, and even the null, dominant and strong energy conditions are violated. In the case of accretion of phantom energy onto a black hole with small HawkingHayward quasi-local mass, we obtain an equation-of-state parameter in the range w ≤ -5/3, guaranteeing the validity of the generalized second law.
机译:采用薄层改进的砖墙方法,我们研究了埋在空间平坦的FriedmannRobertsonWalker宇宙中的黑洞的热力学。对于比例因子的任意解,我们在每个视域中计算温度和熵。我们表明,温度和熵显示出随时间变化的非平凡行为。在黑洞沉浸在由幻象能量驱动的宇宙中的情况下,我们表明,对于状态方程参数的特定范围和视界,熵与D界猜想兼容,甚至与零,显性和违反了强能量条件。在将幻影能量积聚到小HawkingHayward准局部质量的黑洞的情况下,我们获得w≤-5/3的状态方程参数,从而保证了广义第二定律的有效性。

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