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Constraining Weil-Petersson volumes by universal random matrix correlations in low-dimensional quantum gravity

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arxiv 2208.13802 v2 pith:HZ5LWHNW submitted 2022-08-29 hep-th nlin.CDquant-ph

classification hep-thnlin.CDquant-ph
keywords volumesmatrixuniversalweil-peterssongravitymanifoldsmoduliquantum
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Based on the discovery of the duality between Jackiw-Teitelboim quantum gravity and a double-scaled matrix ensemble by Saad, Shenker and Stanford in 2019, we show how consistency between the two theories in the universal Random Matrix Theory (RMT) limit imposes a set of constraints on the volumes of moduli spaces of Riemannian manifolds. These volumes are given in terms of polynomial functions, the Weil-Petersson volumes, solving a celebrated nonlinear recursion formula that is notoriously difficult to analyze. Since our results imply linear relations between the coefficients of the Weil-Petersson volumes, they therefore provide both a stringent test for their symbolic calculation and a possible way of simplifying their construction. In this way, we propose a long-term program to improve the understanding of mathematically hard aspects concerning moduli spaces of hyperbolic manifolds by using universal RMT results as input.

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  1. Chaos and moduli space volumes in unorientable JT gravity

    hep-th 2024-11 conditional novelty 6.0 of 10

    The τ-scaled spectral form factor of unorientable JT gravity agrees with the GOE random-matrix prediction through genus one, using new residue-based formulas for unorientable moduli volumes.

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