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Entangled Bell states of two electrons in coupled quantum dots—phonon decoherence
Authors:A. Hichri   S. Jaziri  R. Ferreira
Affiliation:a Laboratoire de Physique de la Matière Condensée, Facultè des Sciences de, Tunis, Tunisia;b Département de Physique, Faculté des Sciences de Bizerte, 7021 Zarzouna, Bizerte, Tunisia;c Laboratoire de Physique de la Matière Condensée, ENS, F-75005, Paris, France
Abstract:We demonstrate coupling and entangling of quantum states in a pair of vertically aligned self assembled quantum dots by studying the dynamics of two interacting electrons driven by external electric field. The present entanglement involves the spatial degree of freedom for the two electrons system. We show that system of two interacting electrons initially delocalized (localized each in one dot) oscillate slowly in response to electric field, since the strong Coulomb repulsion makes them behaving so. We use an explicit formula for the entanglement of formation of two qubit in terms of the concurrence of the density operator. In ideal situations, entangled quantum states would not decohere during processing and transmission of quantum information. However, real quantum systems will inevitably be influenced by surrounding environments. We discuss the degree of entanglement of this system in which we introduce the decoherence effect caused by the acoustic phonon. In this entangled states proposal, the decohering time depends on the external parameters.
Keywords:Quantum dots   Entanglement   Phonon decoherence
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