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arxiv: 1707.02197 · v4 · pith:QV3UX362new · submitted 2017-07-07 · ✦ hep-th · quant-ph

Chaotic-Integrable Transition in the Sachdev-Ye-Kitaev Model

classification ✦ hep-th quant-ph
keywords modelperturbationtransitionchaotic-integrablefeaturesinfinite-rangequantumsachdev-ye-kitaev
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Quantum chaos is one of the distinctive features of the Sachdev-Ye-Kitaev (SYK) model, $N$ Majorana fermions in $0+1$ dimensions with infinite-range two-body interactions, which is attracting a lot of interest as a toy model for holography. Here we show analytically and numerically that a generalized SYK model with an additional one-body infinite-range random interaction, which is a relevant perturbation in the infrared, is still quantum chaotic and retains most of its holographic features for a fixed value of the perturbation and sufficiently high temperature. However a chaotic-integrable transition, characterized by the vanishing of the Lyapunov exponent and spectral correlations given by Poisson statistics, occurs at a temperature that depends on the strength of the perturbation. We speculate about the gravity dual of this transition.

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  1. Chaos-Integrability Transition in the BPS Subspace of the $\mathcal{N}=2$ SYK Model

    hep-th 2026-05 unverdicted novelty 6.0

    Numerical analysis shows that spectral statistics of a BPS-projected operator in an interpolating N=2 SYK model transition from random-matrix to Poisson behavior as the model moves from chaotic to integrable.