Higher-dimensional BKL dynamics in AdS black holes

Fuente: arXiv
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Autori principali: Cáceres, Elena, Murcia, Ángel J., Patra, Ayan K., Pedraza, Juan F.
Natura: Preprint
Pubblicazione: 2026
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author Cáceres, Elena
Murcia, Ángel J.
Patra, Ayan K.
Pedraza, Juan F.
author_facet Cáceres, Elena
Murcia, Ángel J.
Patra, Ayan K.
Pedraza, Juan F.
contents Chaotic BKL dynamics provides a canonical description of the approach to spacelike singularities as a sequence of Kasner epochs grouped into eras. While this paradigm is well established for cosmological singularities, explicit realizations inside black holes have been scarce, despite renewed interest from holography. Here, we construct a broad class of asymptotically AdS black holes in $D\ge 4$ whose interiors exhibit bona fide BKL dynamics as the singularity is approached. In the near-singularity regime, the evolution reduces to billiard-like motion in a compact domain that forms a regular $(D-2)$-simplex. We derive closed-form bouncing rules for the Kasner exponents in arbitrary dimension and prove the ensuing chaotic dynamics. A key novelty for $D\ge 5$ is a richer internal organization of eras: inequivalent transitions between epochs lead to distinct Kasner seasons, yielding new patterns of epoch/era structure for both electric and gravitational walls. Finally, we investigate a holographic diagnostic, the thermal $a$-function, whose monotonic flow captures individual epochs and eras and can display near-walking behavior in suitable Kasner regimes.
format Preprint
id arxiv_https___arxiv_org_abs_2603_06560
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Higher-dimensional BKL dynamics in AdS black holes
Cáceres, Elena
Murcia, Ángel J.
Patra, Ayan K.
Pedraza, Juan F.
High Energy Physics - Theory
General Relativity and Quantum Cosmology
Chaotic BKL dynamics provides a canonical description of the approach to spacelike singularities as a sequence of Kasner epochs grouped into eras. While this paradigm is well established for cosmological singularities, explicit realizations inside black holes have been scarce, despite renewed interest from holography. Here, we construct a broad class of asymptotically AdS black holes in $D\ge 4$ whose interiors exhibit bona fide BKL dynamics as the singularity is approached. In the near-singularity regime, the evolution reduces to billiard-like motion in a compact domain that forms a regular $(D-2)$-simplex. We derive closed-form bouncing rules for the Kasner exponents in arbitrary dimension and prove the ensuing chaotic dynamics. A key novelty for $D\ge 5$ is a richer internal organization of eras: inequivalent transitions between epochs lead to distinct Kasner seasons, yielding new patterns of epoch/era structure for both electric and gravitational walls. Finally, we investigate a holographic diagnostic, the thermal $a$-function, whose monotonic flow captures individual epochs and eras and can display near-walking behavior in suitable Kasner regimes.
title Higher-dimensional BKL dynamics in AdS black holes
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2603.06560