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Superluminal chaos after a quantum quench

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arxiv 1908.08955 v2 pith:P4UIUZAX submitted 2019-08-23 hep-th cond-mat.stat-mech

Superluminal chaos after a quantum quench

classification hep-th cond-mat.stat-mech
keywords energyinjectionbutterflyconeseffectgrowthlyapunovbefore
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Thermal states holographically dual to black holes in Einstein gravity display maximal Lyapunov growth as well as "butterfly effect cones". We study these effects in highly non-equilibrium states, obtained from an initial thermal state by the sudden injection of energy. We do this by computing out-of-time-order correlators (OTOCs) in BTZ-Vaidya spacetimes, which describe transitions between black holes at different temperatures. If both pairs of boundary operators appearing in the OTOC are inserted before the energy injection, we recover standard results, with butterfly effect cones displaying a light-cone structure. But when one pair of operators is inserted before and the other pair after the energy injection, the Lyapunov growth saturates the chaos bounds set by the local temperatures and the butterfly effect cones "open up", becoming superluminal, albeit in a way that does not violate causality. In the limiting case, in which the initial state is the vacuum, Lyapunov growth only starts after the energy injection. Our computations of the OTOCs are phrased in terms of gravitationally interacting particles, where fields are treated in a geodesic approximation and the eikonal phase shift is expressed in terms of stress tensors and shock waves associated to geodesics.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Butterflies in $\textrm{T}\overline{\textrm{T}}$ deformed anomalous CFT$_2$

    hep-th 2026-05 unverdicted novelty 6.0

    In TTbar-deformed anomalous CFT2 the chaos bound stays saturated while butterfly velocity depends nontrivially on deformation strength and anomaly, with a Hagedorn regime where the chaotic response turns complex.

  2. Higher-dimensional chaotic features and random matrix signatures following a local quench

    hep-th 2026-07 conditional novelty 5.0

    Extrema of local-quench two-point functions in free 1+1 and 2+1 scalar theory show soft-to-GOE nearest-neighbor repulsion and geometry-dominated all-pair form factors.

  3. Geodesics, One Point Functions and Black Hole Perturbations

    hep-th 2026-01 conditional novelty 4.0

    In a perturbed Euclidean BTZ black hole, the first-order change in the thermal one-point function is still controlled by the change in the boundary-to-horizon geodesic length, up to m-dependent prefactors.