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Stability of the microcanonical ensemble in Euclidean Quantum Gravity

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abstract

This work resolves a longstanding tension between the physically-expected stability of the microcanonical ensemble for gravitating systems and the fact that the known negative mode of the asymptotically flat Schwarzschild black hole decays too rapidly at infinity to affect the ADM energy boundary term at infinity. The key to our study is that we fix an appropriate {\it off-shell} notion of energy, which we obtain by constructing the microcanonical partition function as an integral transform of the canonical partition function. After applying the rule-of-thumb for Wick rotations from our recent companion paper to deal with the conformal mode problem of Euclidean gravity, we find a positive definite action for linear perturbations about any Euclidean Schwarzchild (-AdS) black hole. Most of our work is done in a cavity with reflecting boundary conditions, but the cavity wall can be removed by taking an appropriate limit.

fields

hep-th 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

A Note on Black Hole Entropy and Wormhole Instabilities

hep-th · 2025-02-02 · conditional · novelty 5.0

A microcanonical treatment of Euclidean wormhole overlap integrals removes Jeans and GPY instabilities and yields the expected black hole entropy without spurious phases.

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  • A Note on Black Hole Entropy and Wormhole Instabilities hep-th · 2025-02-02 · conditional · none · ref 24 · internal anchor

    A microcanonical treatment of Euclidean wormhole overlap integrals removes Jeans and GPY instabilities and yields the expected black hole entropy without spurious phases.