Dynamical Black Hole in the accelerating Universe approaching the future singularity -- Possible origin of (super-)massive black holes
Shin'ichi Nojiri, Sergei D. Odintsov

TL;DR
This paper constructs exact solutions for dynamical black holes in an expanding universe with constant EoS dark energy, exploring their growth, thermodynamics, and potential role in forming supermassive black holes and future singularities.
Contribution
It introduces new exact solutions for black holes in expanding universes with constant EoS, differing from McVittie metrics, and analyzes their evolution and implications for cosmic structures and singularities.
Findings
Dynamical black holes grow with universe expansion.
Black hole horizons enhance tidal forces near the horizon.
Proposes a new future singularity with a finite-radius sphere inside black holes.
Abstract
We construct and investigate the dynamical black hole spacetime embedded in the expanding universe filled with cosmic fluid, such as dark energy. When the equation of state (EoS) parameter of the fluid is a constant, we find exact solutions of the Einstein equation where the Schwarzschild black hole is embedded in the expanding universe. This solution differs from the well-known McVittie metric, where the EoS parameter is not a constant but rather depends on the radial coordinate. It is shown that a dynamical black hole grows with the expansion of the universe. If primordial black holes are created before or during inflation, above dynamical black holes might be the origin of the supermassive black holes at the centre of galaxies, massive black holes suggested by the GW231123 event, and also the dark matter. The case where the cosmic fluid EoS is more general is also considered so that…
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Taxonomy
TopicsCosmology and Gravitation Theories · Black Holes and Theoretical Physics · Relativity and Gravitational Theory
