Ehrenfest dynamics is purity non-preserving: a necessary ingredient for decoherence

Autor/a

Alonso, J. L.

Clemente-Gallardo, Jesús

Cuchí Oterino, J. C.

Echenique, Pablo

Falceto, Fernando

Fecha de publicación

2013-04-02T07:42:28Z

2013-04-02T07:42:28Z

2012



Resumen

We discuss the evolution of purity in mixed quantum/classical approaches to electronic nonadiabatic dynamics in the context of the Ehrenfest model. As it is impossible to exactly determine initial conditions for a realistic system, we choose to work in the statistical Ehrenfest formalism that we introduced in Alonso et al. [J. Phys. A: Math. Theor. 44, 396004 (2011)10.1088/1751-8113/44/39/395004]. From it, we develop a new framework to determine exactly the change in the purity of the quantum subsystem along with the evolution of a statistical Ehrenfest system. In a simple case, we verify how and to which extent Ehrenfest statistical dynamics makes a system with more than one classical trajectory, and an initial quantum pure state become a quantum mixed one. We prove this numerically showing how the evolution of purity depends on time, on the dimension of the quantum state space D, and on the number of classical trajectories N of the initial distribution. The results in this work open new perspectives for studying decoherence with Ehrenfest dynamics.

Tipo de documento

article
publishedVersion

Lengua

Inglés

Materias y palabras clave

Quantum statistical mechanics; Schrodinger equation; Mecànica estadística; Schrödinger, Equació de

Publicado por

American Institute of Physics

Documentos relacionados

Reproducció del document publicat a: https://doi.org/10.1063/1.4737861

Journal of Chemical Physics, 2012, vol. 137, núm. 5, p. 054106-1/13

Derechos

(c) American Institute of Physics, 2012

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