English

Non-classicality from the phase-space flow analysis of the Weyl-Wigner quantum mechanics

Quantum Physics 2018-01-17 v2 High Energy Physics - Theory

Abstract

A fluid analog of the information flux in the phase-space associated to purity and von Neumann entropy are identified in the Weyl-Wigner formalism of quantum mechanics. Once constrained by symmetry and positiveness, the encountered continuity equations provide novel quantifiers for non-classicality (non-Liouvillian fluidity) given in terms of quantum decoherence, purity and von Neumann entropy fluxes. Through definitions in the Weyl-Wigner formalism, one can identify the quantum fluctuations that distort the classical-quantum coincidence regime, and the corresponding quantum information profile, whenever some bounded xpx-p volume of the phase-space is specified. The dynamics of anharmonic systems is investigated in order to illustrate such a novel paradigm for describing quantumness and classicality through the flux of quantum information in the phase-space.

Keywords

Cite

@article{arxiv.1710.11159,
  title  = {Non-classicality from the phase-space flow analysis of the Weyl-Wigner quantum mechanics},
  author = {Alex E. Bernardini and Orfeu Bertolami},
  journal= {arXiv preprint arXiv:1710.11159},
  year   = {2018}
}

Comments

11 pages, 1 figure