缩放爱因斯坦-因菲尔德黑洞

Peng Wang, Houwen Wu, Haitang Yang
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引用次数: 15

摘要

在爱因斯坦-麦克斯韦-标量(EMS)模型中,由于标量场和麦克斯韦场之间的非极小耦合,发现了Reissner-Nordstr (RN)黑洞的自发标化现象。非线性电动力学,如Born-Infeld (BI)电动力学,在强场域中推广了麦克斯韦理论。本文在BI场与标量场非最小耦合的情况下,研究了Einstein-Born-Infeld-scalar (EBIS)模型的自发标化问题。结果表明,有两种类型的标化黑洞解,即标化类rn解和类schwarzschild解。虽然EBIS模型中类rn解的标化行为与EMS模型中类schwarzschild解的标化行为非常相似,但我们发现EBIS模型中类schwarzschild解的标化行为与EMS模型中类schwarzschild解的标化行为存在显著差异。特别地,类史瓦西解的存在域具有一定的区域,该区域由两个分支组成。大视界区域的分支是一组不分离的标度解,它们不从无标度黑洞分叉。然而,根据参数的不同,较小视界面积的分支可能从无标度黑洞中分叉,也可能不分叉。此外,这两个分支的标量化解在某些参数区域的可比无标量黑洞上都是熵不利的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalarized Einstein-Born-Infeld black holes
The phenomenon of spontaneous scalarization of Reissner-Nordstr\"{o}m (RN) black holes has recently been found in\ an Einstein-Maxwell-scalar (EMS) model due to a non-minimal coupling between the scalar and Maxwell fields. Non-linear electrodynamics, e.g., Born-Infeld (BI) electrodynamics, generalizes Maxwell's theory in the strong field regime. Non-minimally coupling the BI field to the scalar field, we study spontaneous scalarization of an Einstein-Born-Infeld-scalar (EBIS) model in this paper. It shows that there are two types of scalarized black hole solutions, i.e., scalarized RN-like and Schwarzschild-like solutions. Although the behavior of scalarized RN-like solutions in the EBIS model is quite similar to that of scalarize solutions in the EMS model, we find that there exist significant differences between scalarized Schwarzschild-like solutions in the EBIS model and scalarized solutions in the EMS model. In particular, the domain of existence of scalarized Schwarzschild-like solutions possesses a certain region, which is composed of two branches. The branch of larger horizon area is a family of disconnected scalarized solutions, which do not bifurcate from scalar-free black holes. However, the branch of smaller horizon area may or may not bifurcate from scalar-free black holes depending on the parameters. Additionally, these two branches of scalarized solutions can be both entropically disfavored over comparable scalar-free black holes in some parameter region.
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