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October 2, 2025SciPost Physics6 citationsOpen Access

Ringdown in the SYK model

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MDMatthew Dodelson

Key Points

  • The study reveals a tree-like structure in the mode spectrum, reminiscent of curvature singularities.
  • Two-point functions decompose into quasinormal modes, highlighting the model's complex dynamics.
  • Analytic solutions of the Schwinger-Dyson equations enhance understanding of perturbation in thermal correlations.
  • A toy model of stringy black holes qualitatively mimics the observed spectral structure.

Abstract

We analyze thermal correlators in the Sachdev-Ye-Kitaev model away from the maximally chaotic limit. Despite the absence of a weakly curved black hole dual, the two point function decomposes into a sum over a discrete set of quasinormal modes. To compute the spectrum of modes, we analytically solve the Schwinger-Dyson equations to a high order in perturbation theory, and then numerically fit to a sum of exponentials using a technique analogous to the double cone construction. The resulting spectrum has a tree-like structure which is reminiscent of AdS black holes with curvature singularities. We present a simple toy model of stringy black holes that qualitatively reproduces some aspects of this structure.

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Cite This Study

Matthew Dodelson (2025) studied this question.

synapsesocial.com/papers/68de79685b556a9128e1aa03https://doi.org/10.21468/scipostphys.19.3.081
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