Enhanced Photonic Maxwell's Demon with Correlated Baths

Maxwell's Demon is at the heart of the interrelation between quantum information processing and thermodynamics. In this thought experiment, a demon generates a temperature gradient between two thermal baths initially at equilibrium by gaining information at the single-particle level and applyin...

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Veröffentlicht in:Quantum (Vienna, Austria) Austria), 2022-09, Vol.6, p.810, Article 810
Hauptverfasser: Zanin, Guilherme L., Antesberger, Michael, Jacquet, Maxime J., Ribeiro, Paulo H. Souto, Rozema, Lee A., Walther, Philip
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Sprache:eng
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Zusammenfassung:Maxwell's Demon is at the heart of the interrelation between quantum information processing and thermodynamics. In this thought experiment, a demon generates a temperature gradient between two thermal baths initially at equilibrium by gaining information at the single-particle level and applying classical feed-forward operations, allowing for the extraction of work. Here we implement a photonic version of Maxwell's Demon with active feed-forward in a fibre-based system using ultrafast optical switches. We experimentally show that, if correlations exist between the two thermal baths, the Demon can generate a temperature difference over an order of magnitude larger than without correlations, and so extract more work. Our work demonstrates the great potential of photonic experiments – which provide a unique degree of control on the system – to access new regimes in quantum thermodynamics.
ISSN:2521-327X
2521-327X
DOI:10.22331/q-2022-09-20-810