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    Shao-Ying Yin, Qing-Xin Liu, Jie Song, Xue-Xin Xu, Ke-Ya Zhou, Shu-Tian Liu. Quantum correlations dynamics of three-qubit states coupled to an XY spin chain:Role of coupling strengthsJ. Chin. Phys. B, 2017, 26(10): 100501.
    Shao-Ying Yin, Qing-Xin Liu, Jie Song, Xue-Xin Xu, Ke-Ya Zhou, Shu-Tian Liu. Quantum correlations dynamics of three-qubit states coupled to an XY spin chain:Role of coupling strengthsJ. Chin. Phys. B, 2017, 26(10): 100501.
  • Quantum correlations dynamics of three-qubit states coupled to an XY spin chain:Role of coupling strengths

    • We investigate the prominent impacts of coupling strengths on the evolution of entanglement and quantum discord for a three-qubit system coupled to an XY spin-chain environment. In the case of a pure W state, more robust, even larger nonzero quantum correlations can be obtained by tailoring the coupling strengths between the qubits and the environment. For a mixed state consisting of the GHZ and W states, the dynamics of entanglement and quantum discord can characterize the critical point of quantum phase transition. Remarkably, a large nonzero quantum discord is generally retained, while the nonzero entanglement can only be obtained as the system-environment coupling satisfies certain conditions. We also find that the impact of each qubit's coupling strength on the quantum correlation dynamics strongly depends on the variation schemes of the system-environment couplings.
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