Studying quantum correlations dynamics in the phase space for continuous-variable Werner states and Bell-diagonal states

Author:

Siyouri Fatima-Zahra1,Mansour Hicham Ait1,Elbarrichi Fadoua1

Affiliation:

1. Équipe Sciences de la Matière et du Rayonnement, Département de Physique, Faculté des Sciences, Université Mohammed V - Agdal, Av. Ibn Battouta, B. P. 1014, Agdal, Rabat, Morocco

Abstract

We investigate the ability of Wigner function to reveal and measure general quantum correlations in two-qubit open system. For this purpose, we analyze comparatively their dynamics for two different states, continuous-variable Werner states (CWS) and Bell-diagonal states (BDS), independently interacting with dephasing reservoirs. Then, we explore the effects of decreasing the degree of non-Markovianity on their behavior. We show that the presence of both quantum entanglement and quantum discord allow to have a negative Wigner function, in contrast to the result obtained for the closed two-qubit system [F. Siyouri, M. El Baz and Y. Hassouni, The negativity of Wigner function as a measure of quantum correlations, Quantum Inf. Process. 15(10) (2016) 4237–4252]. In fact, we conclude that negativity of Wigner function can be used to capture and quantify the amount of general non-classical correlations in open quantum systems.

Publisher

World Scientific Pub Co Pte Lt

Subject

Physics and Astronomy (miscellaneous)

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