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Prospecting Quantum Correlations and Examining Teleportation Fidelity in a Pair of Coupled Double Quantum Dots System
Authors:Anas Ait Chlih  Atta ur Rahman  Nabil Habiballah
Affiliation:1. LPTHE, Department of Physics, Faculty of Sciences, Ibn Zohr University, PO Box 8106 Agadir, Morocco;2. School of Physics, University of Chinese Academy of Science, Yuquan Road 19A, Beijing, 100049 China;3. LPTHE, Department of Physics, Faculty of Sciences, Ibn Zohr University, PO Box 8106 Agadir, Morocco

Faculty of Applied Sciences, Ibn Zohr University, BP 6146 City of Azrou, Aït-Melloul, 86150 Morocco

Abdus Salam International Centre for Theoretical Physics, Strada Costiera, 11, 34151 Trieste, Italy

Abstract:The topic of improving the ability of quantum systems to retain non-local features and enhance the efficiency of quantum protocols continues. This study delves into the thermal investigation of quantum correlations and teleportation fidelity of a two-qubit teleported state using excess electrons in a coupled double quantum dots system as a quantum channel. The study employs three reliable quantum quantifiers to prospect the resourcefulness and non-classicality of the system. The findings suggest that preserving quantum correlations and optimizing teleportation fidelity require minimizing tunneling coupling and maximizing Coulomb interaction. The study has significant implications for quantum physics and its practical applications in quantum information processing.
Keywords:centrosymmetric states  non-classical correlations  quantum dots systems  teleportation fidelity  X$X$-states
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