Quantum Fluctuations of Entropy Production for Fermionic Systems in Landauer-Buttiker State

Publication date

2017-11-15

Authors

Mintchev, Mihail
Santoni, LucaORCID 0000-0001-9319-6054ISNI 0000000526399010
Sorba, Paul

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Supervisors

Document Type

Article
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Abstract

The quantum fluctuations of the entropy production for fermionic systems in the Landauer-Buttiker non-equilibrium steady state are investigated. The probability distribution, governing these fluctuations, is explicitly derived by means of quantum field theory methods and analysed in the zero frequency limit. It turns out that microscopic processes with positive, vanishing and negative entropy production occur in the system with non-vanishing probability. In spite of this fact, we show that all odd moments (in particular, the mean value of the entropy production) of the above distribution are non-negative. This result extends the second principle of thermodynamics to the quantum fluctuations of the entropy production in the Landauer-Buttiker state. The impact of the time reversal is also discussed.

Keywords

Nonequilibrium statistical mechanics, Exact solutions for many-body systems

Citation

Mintchev, M, Santoni, L & Sorba, P 2017, 'Quantum Fluctuations of Entropy Production for Fermionic Systems in Landauer-Buttiker State', Physical Review E, vol. 96, no. 5, 052124. https://doi.org/10.1103/PhysRevE.96.052124