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Deforming black holes with odd multipolar differential rotation boundary

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arxiv 1906.06183 v1 pith:7PWVUDOJ submitted 2019-06-13 hep-th gr-qc

classification hep-thgr-qc
keywords blackrotationholessolutionsdifferentialschwsolitonsvarepsilon
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Motivated by the novel asymptotically global AdS$_4$ solutions with deforming horizon in [JHEP {\bf 1802}, 060 (2018)], we analyze the boundary metric with odd multipolar differential rotation and numerically construct a family of deforming solutions with tripolar differential rotation boundary, including two classes of solutions: solitons and black holes. We find that the maximal values of the rotation parameter $\varepsilon$, below which the stable large black hole solutions could exist, are not a constant for $T> T_{schw}=\sqrt{3}/2\pi\simeq0.2757$. When temperature is much higher than $ T_{schw}$, even though the norm of Killing vector $\partial_{t}$ keeps timelike for some regions of $\varepsilon<2$, solitons and black holes with tripolar differential rotation could be unstable and develop hair due to superradiance. As the temperature $T$ drops toward $T_{schw}$, we find that though there exists the spacelike Killing vector $\partial_{t}$ for some regions of $\varepsilon>2$, solitons and black holes still exist and do not develop hair due to superradiance. Moreover, for $T\leqslant T_{schw}$, the curves of entropy firstly combine into one curve and then separate into two curves again, in the case of each curve there are two solutions at a fixed value of $\varepsilon$. In addition, we study the deformations of horizon for black holes by using an isometric embedding in the hyperbolic three-dimensional space. Furthermore, we also study the quasinormal modes of the solitons and black holes, which have analogous behaviours to that of dipolar rotation and quadrupolar rotation.

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  1. Deforming charged black holes with dipolar differential rotation boundary

    hep-th 2019-09 conditional novelty 5.0 of 10

    Charged AdS black holes with a dipolar differential rotation boundary are constructed numerically, and pairs of small solutions with different horizon radii are found to share identical horizon geometry, entropy, and ...

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