Quantum Supremacy of Many-Particle Thermal Machines
arXiv:1510.04633 · doi:10.1088/1367-2630/18/7/075019
Abstract
While the emergent field of quantum thermodynamics has the potential to impact energy science, the performance of thermal machines is often classical. We ask whether quantum effects can boost the performance of a thermal machine to reach quantum supremacy, i.e., surpassing both the efficiency and power achieved in classical thermodynamics. To this end, we introduce a nonadiabatic quantum heat engine operating an Otto cycle with a many-particle working medium, consisting of an interacting Bose gas confined in a time-dependent harmonic trap. It is shown that thanks to the interplay of nonadiabatic and many-particle quantum effects, this thermal machine can outperform an ensemble of single-particle heat engines with same resources, demonstrating quantum supremacy in many-particle thermal machines.
6+16pp, 3+5 figures, new section in Appendix B "Quantum Supremacy under identical resources" (see p13-14)
References in corpus (7)
- A single-atom heat engine
- Single ion heat engine with maximum efficiency at maximum power
- Quantum Szilard Engine
- Nonequilibrium fluctuations in quantum heat engines: Theory, example, and possible solid state experiments
- Scaling-up quantum heat engines efficiently via shortcuts to adiabaticity
- The Quantum Refrigerator: The quest for absolute zero
- Quantum statistics and the performance of engine cycles
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