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Complexity via Replica Trick

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arxiv 2205.01150 v1 pith:25HFTWQA submitted 2022-05-02 hep-th

Complexity via Replica Trick

classification hep-th
keywords complexityend-of-the-worldfunctionsreplicatrickadditionapproachbehaviour
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider the complexity of a single-sided AdS black hole as modelled by an end-of-the-world brane. In addition, we present multi-boundary partition functions and matter correlation functions for such a setting. We compute the complexity using a modified replica trick corresponding to the "quenched geodesic length" in JT gravity. The late-time behaviour of complexity shows a saturation to a constant value of order $e^{S_0}$ following a period of linear growth. Furthermore, we show that our approach leads to an improved result for the variance of complexity, namely it being time-independent at late times. We conclude by commenting on the introduction of dynamical end-of-the-world branes.

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  1. Finite cutoff JT gravity: Baby universes, Matrix dual, and (Krylov) Complexity

    hep-th 2025-02 unverdicted novelty 5.0

    Finite cutoff in JT gravity causes faster ERB-length saturation, deformation-dependent baby-universe emission only under Lorentzian evolution, and possible one-cut universality corrections in the matrix dual.