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Stochastic Operator Variance: An Observable to Diagnose Noise and Scrambling

Pablo Martínez-Azcona, Aritra Kundu, Adolfo del Campo, Aurélia Chenu

2023Physical Review Letters12 citationsDOIOpen Access PDF

Abstract

Noise is ubiquitous in nature, so it is essential to characterize its effects. Considering a fluctuating Hamiltonian, we introduce an observable, the stochastic operator variance (SOV), which measures the spread of different stochastic trajectories in the space of operators. The SOV obeys an uncertainty relation and allows us to find the initial state that minimizes the spread of these trajectories. We show that the dynamics of the SOV is intimately linked to that of out-of-time-order correlators, which define the quantum Lyapunov exponent $\ensuremath{\lambda}$. Our findings are illustrated analytically and numerically in a stochastic Lipkin-Meshkov-Glick Hamiltonian undergoing energy dephasing.

Topics & Concepts

ObservableScramblingStatistical physicsHamiltonian (control theory)Lyapunov exponentOperator (biology)PhysicsDephasingMathematicsQuantum mechanicsMathematical physicsMathematical optimizationAlgorithmNonlinear systemRepressorChemistryTranscription factorGeneBiochemistryAdvanced Thermodynamics and Statistical MechanicsQuantum many-body systemsQuantum Mechanics and Applications
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