Using the operational framework of completely positive, trace preserving operations and thermodynamic fluctuation relations, we derive a lower bound for the heat exchange in a Landauer erasure process on a quantum system. Our bound comes from a nonphenomenological derivation of the Landauer principle which holds for generic nonequilibrium dynamics. Furthermore, the bound depends on the nonunitality of dynamics, giving it a physical significance that differs from other derivations. We apply our framework to the model of a spin-1/2 system coupled to an interacting spin chain at finite temperature.

Goold J., Paternostro M., Modi K. (2015). Nonequilibrium quantum landauer principle. PHYSICAL REVIEW LETTERS, 114(6) [10.1103/PhysRevLett.114.060602].

Nonequilibrium quantum landauer principle

Paternostro M.
Co-ultimo
Conceptualization
;
2015-02-09

Abstract

Using the operational framework of completely positive, trace preserving operations and thermodynamic fluctuation relations, we derive a lower bound for the heat exchange in a Landauer erasure process on a quantum system. Our bound comes from a nonphenomenological derivation of the Landauer principle which holds for generic nonequilibrium dynamics. Furthermore, the bound depends on the nonunitality of dynamics, giving it a physical significance that differs from other derivations. We apply our framework to the model of a spin-1/2 system coupled to an interacting spin chain at finite temperature.
9-feb-2015
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
Goold J., Paternostro M., Modi K. (2015). Nonequilibrium quantum landauer principle. PHYSICAL REVIEW LETTERS, 114(6) [10.1103/PhysRevLett.114.060602].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/664657
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