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Unveiling coherent dynamics in non-Markovian open quantum systems: exact expression and recursive perturbation expansion

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arxiv 2506.04097 v2 pith:W4D5XOJP submitted 2025-06-04 quant-ph

Unveiling coherent dynamics in non-Markovian open quantum systems: exact expression and recursive perturbation expansion

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keywords coherentdynamicsexpansionnon-markovianquantumsystemsapplyingderive
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We introduce a systematic framework to derive the effective Hamiltonian governing the coherent dynamics of non-Markovian open quantum systems. By applying the minimal dissipation principle, we uniquely isolate the coherent contribution to the time-local generator of the reduced dynamics. We derive a general expression for the effective Hamiltonian and develop a recursive perturbative expansion that expresses it in terms of system-bath interaction terms and bath correlation functions. This expansion provides a systematic tool for analyzing energy renormalization effects across different coupling regimes. Applying our framework to paradigmatic spin systems, we reveal how environmental correlations influence energy shifts and eigenbasis rotations, offering new insights into strong-coupling effects and non-Markovian quantum thermodynamics.

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  1. Finite-Bath Open Quantum Systems: Exact Dynamics

    quant-ph 2025-11 conditional novelty 5.0

    Exact time-local master equations are derived for a finite-bath central spin model (Heisenberg and stochastic dephasing couplings), producing a phase-covariant channel and a spin-bath realization of random telegraph noise.