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Stationary scalar clouds around a rotating BTZ-like black hole in the Einstein-bumblebee gravity

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arxiv 2501.15759 v1 pith:WZ7HUZMB submitted 2025-01-27 gr-qc hep-th

Stationary scalar clouds around a rotating BTZ-like black hole in the Einstein-bumblebee gravity

classification gr-qc hep-th
keywords scalarcloudsstationaryaroundblackbreakinglorentzparameter
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We have studied stationary clouds of massive scalar fields around a rotating BTZ-like black hole in the Einstein-bumblebee gravity, by imposing the Robin type boundary conditions at the AdS boundary. We establish, by scanning the parameter space, the existence of \textit{fundamental} stationary scalar clouds ($i.e.$, the overtone number $n=0$). In particular, we observe that the Lorentz symmetry breaking parameter $s$ and the quantum number $k$ play an opposite role in determining scalar clouds, which indicates the existence of \textit{degenerate} scalar clouds. To illustrate the fact that scalar clouds may only be supported for the $n=0$ case, we have analyzed the impact of various parameters on scalar quasinormal modes. It is shown that the Lorentz symmetry breaking parameter $s$ does not change the superradiance condition, and superradiant instabilities only appear for the fundamental modes. Our work shows that the Lorentz symmetry breaking provides richer physics in stationary scalar clouds around black holes.

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Cited by 2 Pith papers

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    Dipolar-BEC density fluctuations serve as a Lorentz-violating vacuum; two impurity detectors can harvest entanglement from it, with the optimal detector gap and switching-width behavior differing from the Lorentz-inva...