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Mpemba effect and super-accelerated thermalization in the damped quantum harmonic oscillator

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arxiv 2411.09589 v2 pith:VFASUHNR submitted 2024-11-14 quant-ph

Mpemba effect and super-accelerated thermalization in the damped quantum harmonic oscillator

classification quant-ph
keywords equilibriumeffectquantumrelaxationmpembasuper-acceleratedinitialsystems
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

The behavior of systems far from equilibrium is often complex and unpredictable, challenging and sometimes overturning the physical intuition derived from equilibrium scenarios. One striking example of this is the Mpemba effect, which implies that non-equilibrium states can sometimes relax more rapidly when they are further from equilibrium. Despite a rich historical background, the precise conditions and mechanisms behind this phenomenon remain unclear. Recently, there has been growing interest in investigating accelerated relaxation and Mpemba-like effects within quantum systems. In this work, we explore a quantum manifestation of the Mpemba effect in a simple and paradigmatic model of open quantum systems: the damped quantum harmonic oscillator, which describes the relaxation of a bosonic mode in contact with a thermal bath at finite temperature $T$. By means of an exact analytical analysis of the relaxation dynamics based on the method of moments in both population and coherence subspaces, we demonstrate that any initial distribution of populations with the first $r$ moments exactly matching those of the equilibrium distribution shows a super-accelerated relaxation to equilibrium at a rate linearly increasing with $r$, leading to a pronounced Mpemba effect. In particular, one can find a broad class of far-from-equilibrium distributions that relax to equilibrium faster than any other initial thermal state with a temperature $T'$ arbitrarily close to $T$. The super-accelerated relaxation effect is shown to persist even for a broad class of initial states with non-vanishing coherences, and a general criterion for the observation of super-accelerated thermalization is presented.

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Cited by 3 Pith papers

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

  1. Strong Quantum Mpemba Effect from Exact Slow-Mode Selection in Constrained Rydberg Chains

    quant-ph 2026-07 accept novelty 7.0

    Translation-invariant states with Tr(Hρ0)=0 remove the exact H slow mode of the dephased Liouvillian and thus relax asymptotically faster than thermal states, yielding a strong quantum Mpemba effect in constrained Ryd...

  2. Squeezed-state radiation in shockwave scattering: QCD-Gravity double copy

    hep-th 2026-05 unverdicted novelty 7.0

    The n-particle gluon radiation spectrum in shockwave scattering is a generalized Susskind-Glogower squeezed coherent state, and multi-graviton radiation follows similarly via double copy, with feasible large squeezing...

  3. Thermodynamic limits of the Mpemba effect: A unified resource theory analysis of correlation-enabled mechanisms

    quant-ph 2025-01 unverdicted novelty 7.0

    Correlations enable the Mpemba effect in a resource theory framework but are necessary yet insufficient depending on distribution and parameters, explaining sporadic experimental observations.