Double-trace instability of BTZ black holes
Oscar J.C. Dias, David Sola Gil, Jorge E. Santos

TL;DR
This paper investigates the stability of rotating BTZ black holes under massive scalar perturbations with double-trace boundary conditions, revealing new instabilities and mapping stability regions, with implications for higher-dimensional black holes.
Contribution
It demonstrates that BTZ black holes can become unstable under double-trace boundary conditions, including for axisymmetric modes, and maps the stability boundaries in parameter space.
Findings
BTZ black holes are unstable under double-trace conditions for certain parameters.
Instabilities occur for both axisymmetric and non-axisymmetric modes, with axisymmetric being dominant.
Identifies regions where BTZ black holes are unstable while global AdS3 remains stable.
Abstract
We perform a comprehensive study of the linear stability of rotating BTZ black holes under massive scalar field perturbations with double-trace boundary conditions. While BTZ black holes are stable under standard Dirichlet and Neumann boundary conditions, we demonstrate that they can develop instabilities when subjected to double-trace boundary conditions. Our key findings are threefold. First, we show that BTZ black holes exhibit instabilities not only for non-axisymmetric modes previously the only known unstable sector but crucially also for axisymmetric modes. Second, we prove that the axisymmetric instability is the dominant and most fundamental: configurations unstable to any non-axisymmetric mode are already unstable to the axisymmetric one. Third, we identify regions in the BTZ parameter space where these black holes are unstable while global…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Astrophysical Phenomena and Observations · Cosmology and Gravitation Theories
