Litcius/Paper detail

Out-of-time-order correlator in coupled harmonic oscillators

Tetsuya Akutagawa, Koji Hashimoto, Toshiaki Sasaki, Ryota Watanabe

2020Journal of High Energy Physics56 citationsDOIOpen Access PDF

Abstract

A bstract Exponential growth of thermal out-of-time-order correlator (OTOC) is an indicator of a possible gravity dual, and a simple toy quantum model showing the growth is being looked for. We consider a system of two harmonic oscillators coupled nonlinearly with each other, and numerically observe that the thermal OTOC grows exponentially in time. The system is well-known to be classically chaotic, and is a reduction of Yang-Mills-Higgs theory. The exponential growth is certified because the growth exponent (quantum Lyapunov exponent) of the thermal OTOC is well matched with the classical Lyapunov exponent, including their energy/temperature dependence. Even in the presence of the exponential growth in the OTOC, the energy level spacings are not sufficient to judge a Wigner distribution, hence the OTOC is a better indicator of quantum chaos.

Topics & Concepts

Lyapunov exponentExponential growthExponentExponential functionPhysicsStatistical physicsQuantumHarmonicChaoticMathematicsQuantum mechanicsMathematical analysisNonlinear systemComputer scienceArtificial intelligencePhilosophyLinguisticsQuantum many-body systemsModel Reduction and Neural NetworksBlack Holes and Theoretical Physics