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arxiv: 1711.05556 · v1 · submitted 2017-11-15 · ✦ hep-th · hep-lat· quant-ph

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Real-time dynamics of matrix quantum mechanics beyond the classical approximation

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classification ✦ hep-th hep-latquant-ph
keywords classicalapproximationdynamicsquantumsystembeyondbounddemonstrate
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We describe a numerical method which allows us to go beyond the classical approximation for the real-time dynamics of many-body systems by approximating the many-body Wigner function by the most general Gaussian function with time-dependent mean and dispersion. On a simple example of a classically chaotic system with two degrees of freedom we demonstrate that this Gaussian state approximation is accurate for significantly smaller field strengths and longer times than the classical one. Applying this approximation to matrix quantum mechanics, we demonstrate that the quantum Lyapunov exponents are in general smaller than their classical counterparts, and even seem to vanish below some temperature. This behavior resembles the finite-temperature phase transition which was found for this system in Monte-Carlo simulations, and ensures that the system does not violate the Maldacena-Shenker-Stanford bound $\lambda_L < 2 \pi T$, while the classical dynamics inevitably breaks the bound.

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Cited by 1 Pith paper

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

  1. Real-Time Quantum Dynamics on the Fuzzy Sphere: Chaos and Entanglement

    hep-th 2026-05 unverdicted novelty 5.0

    In this fuzzy-sphere matrix model the largest Lyapunov exponent drops to zero at finite temperature, respecting the Maldacena-Shenker-Stanford bound while entanglement shows fast scrambling.