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Evolution of black holes through a nonsingular cosmological bounce

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arxiv 2206.08466 v2 pith:5G4R4KUF submitted 2022-06-16 gr-qc hep-th

classification gr-qchep-th
keywords blackholebounceholescosmologicalhorizonnonsingularduring
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We study the classical dynamics of black holes during a nonsingular cosmological bounce. Taking a simple model of a nonsingular bouncing cosmology driven by the combination of a ghost and ordinary scalar field, we use nonlinear evolutions of the Einstein equations to follow rotating and non-rotating black holes of different sizes through the bounce. The violation of the null energy condition allows for a shrinking black hole event horizon and we find that for sufficiently large black holes (relative to the minimum Hubble radius) the black hole apparent horizon can disappear during the contraction phase. Despite this, we show that most of the local cosmological evolution remains largely unaffected by the presence of the black hole. We find that, independently of the black hole's initial mass, the black hole's event horizon persists throughout the bounce, and the late time dynamics consists of an expanding universe with a black hole of mass comparable to its initial value.

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  1. Cosmological initial data without periodic boundary conditions

    gr-qc 2026-07 conditional novelty 6.0 of 10

    Cosmological initial data with localized anisotropic fluid perturbations can be generated by outward integration of the parabolic-hyperbolic constraints from regular data at the origin, eliminating boundary conditions.

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