Relativity and Cosmology

   

Truly Two-Dimensional Black Holes Under Dimensional Transitions of Spacetime

Authors: Wanpeng Tan

A sufficiently massive star in the end of its life will inevitably collapse into a black hole as more deconfined degrees of freedom make the core ever softer. One possible way to avoid the singularity in the end is by dimensional phase transition of spacetime. Indeed, the black hole interior, two-dimensional in nature, can be described well as a perfect fluid of free massless Majorana fermions and gauge bosons under a 2-d supersymmetric mirror model with new understanding of emergent gravity from dimensional evolution of spacetime. In particular, the 2-d conformal invariance of the black hole gives rise to desired consistent results for the interior microphysics and structures including its temperature, density, and entropy.

Comments: 6 Pages. Essay written for the Gravity Research Foundation 2021 Awards for Essays on Gravitation

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[v1] 2021-03-30 23:52:16

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