论文标题
重力脱钩的毛茸茸的黑洞
Hairy black holes by gravitational decoupling
论文作者
论文摘要
在真空施瓦茨柴尔兹柴尔德度量的中心来源周围代表的黑色孔中,根据i)的最小要求检查了i)存在明确的事件范围和ii)的存在,ii)在地平线外部的头发中存在强或主要的能量状况。我们通过重力解耦方法来开发分析。我们发现,种子Schwarzschild真空的微不足道变形可保留能量条件,并提供了一种新的机制,可以基于与产生这些转换的电荷相关的主要头发逃避无头发定理。在上述条件i)和ii)下,始终将熵从施瓦茨柴尔德几何形状给出的最小值中增加。作为一个直接应用,我们发现了Reissner-Nordstrom黑洞的非平凡扩展,显示出令人惊讶的简单视野。最后,完全指定了生成这种新溶液的非线性电动力学。
Black holes with hair represented by generic fields surrounding the central source of the vacuum Schwarzschild metric are examined under the minimal set of requirements consisting of i) the existence of a well defined event horizon and ii) the strong or dominant energy condition for the hair outside the horizon. We develop our analysis by means of the gravitational decoupling approach. We find that trivial deformations of the seed Schwarzschild vacuum preserve the energy conditions and provide a new mechanism to evade the no-hair theorem based on a primary hair associated with the charge generating these transformations. Under the above conditions i) and ii), this charge consistently increases the entropy from the minimum value given by the Schwarzschild geometry. As a direct application, we find a non-trivial extension of the Reissner-Nordstrom black hole showing a surprisingly simple horizon. Finally, the non-linear electrodynamics generating this new solution is fully specified.