Exact solutions for the quantum evolution of two- and three-mode coupled thermal oscillators show state swapping and noise-induced coherence; photonic QHEs achieve maximum work at parametric resonance with Carnot efficiency as the limit, and correlated Gaussian states are equivalent to uncorrelated
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Quantum evolution of mixed states and performance of quantum heat engines
Exact solutions for the quantum evolution of two- and three-mode coupled thermal oscillators show state swapping and noise-induced coherence; photonic QHEs achieve maximum work at parametric resonance with Carnot efficiency as the limit, and correlated Gaussian states are equivalent to uncorrelated