New Journal of Physics (Jan 2015)

Work, heat and entropy production in bipartite quantum systems

  • Hoda Hossein-Nejad,
  • Edward J O’Reilly,
  • Alexandra Olaya-Castro

DOI
https://doi.org/10.1088/1367-2630/17/7/075014
Journal volume & issue
Vol. 17, no. 7
p. 075014

Abstract

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In bipartite quantum systems commutation relations between the Hamiltonian of each subsystem and the interaction impose fundamental constraints on the dynamics of each partition. Here we investigate work, heat and entropy production in bipartite systems characterized by particular commutators between their local Hamiltonians and the interaction operator. We consider the formalism of (Weimer et al 2008 Europhys. Lett. http://dx.doi.org/0295-5075/83/3/30008 83 http://dx.doi.org/0295-5075/83/3/30008 ), in which heat (work) is identified with energy changes that (do not) alter the local von Neumann entropy, as observed in an effective local measurement basis. We demonstrate the consequences of the commutation relations on the work and heat fluxes into each partition, and extend the formalism to open quantum systems where one, or both, partitions are subject to a Markovian thermal bath. We also discuss the relation between heat and entropy in bipartite quantum systems out of thermal equilibrium, and reconcile the aforementioned approach with the second law of thermodynamics.

Keywords