Quantum teleportation and dynamics of quantum coherence and metrological non-classical correlations for open two-qubit systems

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作者
Yassine Dakir
Abdallah Slaoui
Abdel-Baset A. Mohamed
Rachid Ahl Laamara
Hichem Eleuch
机构
[1] Mohammed V University in Rabat,LPHE
[2] Mohammed V University in Rabat,Modeling and Simulation, Faculty of Sciences
[3] Prince Sattam bin Abdulaziz University,Centre of Physics and Mathematics, CPM, Faculty of Sciences
[4] Assiut University,Department of Mathematics, College of Science and Humanities
[5] University of Sharjah,Department of Mathematics, Faculty of Science
[6] Abu Dhabi University,Department of Applied Physics and Astronomy
[7] Texas A &M University,College of Arts and Sciences
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We investigate the dynamics of non-classical correlations and quantum coherence in open quantum systems by employing metrics like local quantum Fisher information, local quantum uncertainty, and quantum Jensen-Shannon divergence. Our focus here is on a system of two qubits in two distinct physical situations: the first one when the two qubits are coupled to a cavity field whether the system is closed or open, while the second consists of two qubits immersed in dephasing reservoirs. Our study places significant emphasis on how the evolution of these quantum criterion is influenced by the initial state’s purity (whether pure or mixed) and the nature of the environment (whether Markovian or non-Markovian). We observe that a decrease in the initial state’s purity corresponds to a reduction in both quantum correlations and quantum coherence, whereas higher purity enhances these quantumness. Furthermore, we establish a quantum teleportation strategy based on the two different physical scenarios. In this approach, the resulting state of the two qubits functions as a quantum channel integrated into a quantum teleportation protocol. We also analyze how the purity of the initial state and the Markovian or non-Markovian regimes impact the quantum teleportation process.
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