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Dynamical invariant based shortcut to equilibration in open quantum systems

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arxiv 2401.11659 v3 pith:JBF3YE3U submitted 2024-01-22 quant-ph cond-mat.stat-mech

classification quant-phcond-mat.stat-mech
keywords quantumequilibrationdynamicsinvariantopensystemcontroldynamical
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We propose using the dynamical invariant also known as the Lewis-Riesenfeld invariant, to speed-up the equilibration of a driven open quantum system. This allows us to reverse engineer the time-dependent master equation that describes the dynamics of the open quantum system and systematically derive a protocol that realizes a shortcut to equilibration. The method does not require additional constraints on the timescale of the dynamics beside the Born-Markov approximation and can be generically applied to boost single particle quantum engines significantly. We demonstrate it with the damped harmonic oscillator, and show that our protocol can achieve a high-fidelity control in shorter timescales than simple non-optimized protocols. We find that the system is heated during the dynamics to speed-up the equilibration, which can be considered as an analogue of the Mpemba effect in quantum control.

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Cited by 2 Pith papers

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

  1. Optimal Control for Open Quantum System in Circuit Quantum Electrodynamics

    quant-ph 2024-12 conditional novelty 4.0 of 10

    Pontryagin-optimized pulses can move a damped resonator to a target coherent state with lower energy than shortcut-to-adiabatic pulses and provide high readout SNR at large critical photon numbers.

  2. The quantum Mpemba effects

    cond-mat.stat-mech 2025-02 accept novelty 2.0 of 10

    A review of the quantum Mpemba effect covering open and isolated quantum systems, key theories, experiments, and open questions.

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