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Thermal activation of thin-shells in anti-de Sitter black hole spacetime

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abstract

We investigate thermal activation of thin-shells around anti-de Sitter black holes. Under the thin-shell approximation, we extensively study the parameter region that allows a bubble nucleation bounded by a thin-shell out of a thermal bath. We show that in general if one fixes the temperature outside the shell, one needs to consider the presence of a conical deficit inside the shell in the Euclidean manifold, due to the lack of solutions with a smooth manifold. We show that for a given set of theoretical parameters, i.e., vacuum and shell energy density, there is a finite range of black hole masses that allow this transition. Most interestingly, one of them describes the complete evaporation of the initial black hole.

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representative citing papers

Connecting the Higgs Potential and Primordial Black Holes

hep-ph · 2019-09-02 · conditional · novelty 6.0

A percolation calculation connects the Higgs potential parameters to the allowed masses and formation temperatures of primordial black holes, excluding regions where vacuum decay bubbles would have destroyed the universe.

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  • Connecting the Higgs Potential and Primordial Black Holes hep-ph · 2019-09-02 · conditional · none · ref 25 · internal anchor

    A percolation calculation connects the Higgs potential parameters to the allowed masses and formation temperatures of primordial black holes, excluding regions where vacuum decay bubbles would have destroyed the universe.