A quantum engine in the BEC–BCS crossover

Koch, Jennifer and Menon, Keerthy and Cuestas,, Eloisa and Barbosa,, Sian and Lutz, Eric and Fogarty,, Thomás and Busch, Thomas and Widera, Artur (2023) A quantum engine in the BEC–BCS crossover. Nature, 621. pp. 723-727.

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Abstract

Heat engines convert thermal energy into mechanical work both in the classical and quantum regimes1. However, quantum theory offers genuine non-classical forms of energy, different from heat, which so far have not been exploited in cyclic engines. Here we experimentally realize a quantum many-body engine fuelled by the energy difference between fermionic and bosonic ensembles of ultracold particles that follows from the Pauli exclusion principle2. We employ a harmonically trapped superfluid gas of 6Li atoms close to a magnetic Feshbach resonance3 that allows us to effectively change the quantum statistics from Bose–Einstein to Fermi–Dirac, by tuning the gas between a Bose–Einstein condensate of bosonic molecules and a unitary Fermi gas (and back) through a magnetic field4,5,6,7,8,9,10. The quantum nature of such a Pauli engine is revealed by contrasting it with an engine in the classical thermal regime and with a purely interaction-driven device. We obtain a work output of several 106 vibrational quanta per cycle with an efficiency of up to 25%. Our findings establish quantum statistics as a useful thermodynamic resource for work production.

Item Type: Article
Subjects: Journal Eprints > Multidisciplinary
Depositing User: Managing Editor
Date Deposited: 14 Nov 2023 06:04
Last Modified: 14 Nov 2023 06:04
URI: http://repository.journal4submission.com/id/eprint/3240

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