Small Black Hole Explosions
Roberta Angius, Jesus Huertas, Angel M. Uranga

TL;DR
This paper investigates the conditions under which small black holes in 4d theories can explode or puff up into regular black holes, revealing new constraints on scalar potentials and implications for the Cobordism Distance Conjecture.
Contribution
It introduces a critical exponent determining small black hole explosions, connects 4d and 2d perspectives, and uncovers constraints on scalar potentials in supergravity theories.
Findings
Small black hole explosions depend on a critical scalar potential exponent.
Many known supergravity black hole solutions are incomplete due to anomalies.
Constraints derived support the Cobordism Distance Conjecture and properties of moduli spaces.
Abstract
Small black holes are a powerful tool to explore infinite distances in moduli spaces. However, we show that in 4d theories with a scalar potential growing fast enough at infinity, it is energetically too costly for scalars to diverge at the core, and the small black hole puffs up into a regular black hole, or follows a runaway behaviour. We derive a critical exponent characterizing the occurrence or not of such small black hole explosions, both from a 4d perspective, and in the 2d theory after an truncation. The latter setup allows a unified discussion of fluxes, domain walls and black holes, solving an apparent puzzle in the expression of their potentials in the 4d gauged supergravity context. We discuss the realization of these ideas in 4d gauged supergravities. Along the way we show that many regular black hole supergravity solutions in the…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Astrophysical Phenomena and Observations · Pulsars and Gravitational Waves Research
