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Correlation Dynamics of Three-Qubit System Under a Classical Dephasing Environment
Authors:M Mahdian  M Yahyavi  R Yousefjani
Institution:1. Department of Theoretical Physics and Astrophysics, University of Tabriz, Tabriz, 51664, Iran
2. Department of Physics, University of Kurdistan, P.O. Box 66177-15175, Sanandaj, Iran
Abstract:By starting from the stochastic Hamiltonian of the three correlated spins and modeling their frequency fluctuations as caused by dephasing noisy environments described by Ornstein-Uhlenbeck (OU) processes, we study the dynamics of quantum correlations, including entanglement and quantum discord. Of course, in this article, we use two definitions for the quantum discord (global quantum discord and quantum dissension). We prepared initially our open system with the Greenberger-Horne-Zeilinger (GHZ) and W states and present the exact solutions for evolution dynamics of entanglement and quantum discord between three spins under both Markovian and non-Markovian regime of this classical noise. By comparison the dynamics of entanglement with that of quantum discord we find that entanglement can be more robust than quantum discord against this noise. It is shown that by considering non-Markovian extensions the survival time of correlations prolong. Also, we compare the results of two definitions of the quantum discord and show that the quantum dissension is equal to the global quantum discord for GHZ state, but they are unequal for the W state.
Keywords:
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