A Modified Cosmic Brane Proposal for Holographic Renyi Entropy
Abstract
We propose a new formula for computing holographic Renyi entropies in the presence of multiple extremal surfaces. Our proposal is based on computing the wave function in the basis of fixed-area states and assuming a diagonal approximation for the Renyi entropy. For Renyi index , our proposal agrees with the existing cosmic brane proposal for holographic Renyi entropy. For , however, our proposal predicts a new phase with leading order (in Newton's constant ) corrections to the cosmic brane proposal, even far from entanglement phase transitions and when bulk quantum corrections are unimportant. Recast in terms of optimization over fixed-area states, the difference between the two proposals can be understood to come from the order of optimization: for , the cosmic brane proposal is a minimax prescription whereas our proposal is a maximin prescription. We demonstrate the presence of such leading order corrections using illustrative examples. In particular, our proposal reproduces existing results in the literature for the PSSY model and high-energy eigenstates, providing a universal explanation for previously found leading order corrections to the Renyi entropies.
Cite
@article{arxiv.2312.04625,
title = {A Modified Cosmic Brane Proposal for Holographic Renyi Entropy},
author = {Xi Dong and Jonah Kudler-Flam and Pratik Rath},
journal= {arXiv preprint arXiv:2312.04625},
year = {2024}
}
Comments
29 pages, 10 figures, lemma added and theorem strengthened in v2, minor wording changes and footnote in v3