Loop quantum effect and the fate of tachyon field collapse
Y. Tavakoli, P. Vargas Moniz, J. Marto, A. H. Ziaie

TL;DR
This paper investigates how loop quantum corrections influence the gravitational collapse of a tachyon field, preventing singularities and causing energy to be emitted outward, contrasting with classical black hole formation.
Contribution
It introduces loop quantum effects into tachyon collapse models, demonstrating singularity avoidance and energy flux phenomena not present in classical theories.
Findings
Loop quantum corrections prevent classical singularities during collapse.
An outward energy flux occurs due to quantum effects.
Black hole formation is altered by quantum corrections.
Abstract
We study the fate of gravitational collapse of a tachyon field matter. In presence of an inverse square potential a black hole forms. Loop quantum corrections lead to the avoidance of classical singularities, which is followed by an outward flux of energy.
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