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Quantum Equivalence and Quantum Signatures in Heat Engines

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abstract

Quantum heat engines (QHE) are thermal machines where the working substance is quantum. In the extreme case the working medium can be a single particle or a few level quantum system. The study of QHE has shown a remarkable similarity with the standard thermodynamical models, thus raising the issue what is quantum in quantum thermodynamics. Our main result is thermodynamical equivalence of all engine type in the quantum regime of small action. They have the same power, the same heat, the same efficiency, and they even have the same relaxation rates and relaxation modes. Furthermore, it is shown that QHE have quantum-thermodynamic signature, i.e thermodynamic measurements can confirm the presence of quantum coherence in the device. The coherent work extraction mechanism enables power outputs that greatly exceed the power of stochastic (dephased) engines.

fields

quant-ph 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Information Transport in Classical-Quantum Hybrid System

quant-ph · 2025-08-11 · unverdicted · novelty 5.0

A multi-replica master equation for strong-coupling quantum-classical hybrid systems is introduced, and the authors find that coherence plus hybridization suppress net entropy transfer.

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  • Information Transport in Classical-Quantum Hybrid System quant-ph · 2025-08-11 · unverdicted · none · ref 20 · internal anchor

    A multi-replica master equation for strong-coupling quantum-classical hybrid systems is introduced, and the authors find that coherence plus hybridization suppress net entropy transfer.