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2026 3 2025 2

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representative citing papers

Typical Mixing and Rare-State Bottlenecks in Open Quantum Systems

quant-ph · 2026-05-08 · unverdicted · novelty 7.0

Typical trace-distance relaxation concentrates around a mean in open quantum systems, producing typical mixing times separated from worst-case by rare-state bottlenecks that scale logarithmically, linearly, or exponentially depending on the slow modes.

Zeno-Assisted Quantum Heat Engines

quant-ph · 2026-05-18 · conditional · novelty 6.0

A quantum Zeno dynamics protocol confines the evolution of a finite-time Otto-cycle quantum heat engine to a subspace that preserves instantaneous energy populations, recovering quasistatic efficiency with added thermodynamic costs from monitoring and switching.

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Showing 5 of 5 citing papers.

  • Typical Mixing and Rare-State Bottlenecks in Open Quantum Systems quant-ph · 2026-05-08 · unverdicted · none · ref 13

    Typical trace-distance relaxation concentrates around a mean in open quantum systems, producing typical mixing times separated from worst-case by rare-state bottlenecks that scale logarithmically, linearly, or exponentially depending on the slow modes.

  • Exact Floquet dynamics of strongly damped driven quantum systems quant-ph · 2025-11-11 · unverdicted · none · ref 76

    A periodic matrix product operator representation of the influence functional yields a numerically exact Floquet propagator for non-Markovian dynamics in strongly damped driven quantum systems.

  • Zeno-Assisted Quantum Heat Engines quant-ph · 2026-05-18 · conditional · none · ref 90

    A quantum Zeno dynamics protocol confines the evolution of a finite-time Otto-cycle quantum heat engine to a subspace that preserves instantaneous energy populations, recovering quasistatic efficiency with added thermodynamic costs from monitoring and switching.

  • Quantum thermodynamics of Gross-Pitaevskii qubits cond-mat.stat-mech · 2025-10-14 · unverdicted · none · ref 50

    Nonlinear Gross-Pitaevskii qubits enable quantum Otto engines with significantly higher efficiency than linear engines.

  • Thermodynamical aspects of optically pumped dense atomic medium quant-ph · 2026-04-10 · unverdicted · none · ref 24

    Higher thermodynamic efficiency in preparing non-equilibrium spin states in atomic vapors directly improves the quantum Fisher information bound on magnetometer sensitivity.