Please use this identifier to cite or link to this item: https://dspace.uzhnu.edu.ua/jspui/handle/lib/56577
Title: Time of quantum information transfer from one atom qubit to another taking into account damping of quantum states
Authors: Reity, Oleksandr
Keywords: Quantum information, atom-qubit, damping of quantum states
Issue Date: 10-May-2023
Publisher: EQUILIBRIA, s.r.o., Slovakia for IEP SAS
Citation: V.Yu. Lazur, S.M. Kuzma, V.V. Rubish, O.K. Reity: Time of quantum information transfer from one atom qubit to another taking into account damping of quantum states // Proceedings of the 22th Small Triangle Meeting (October 25-28, 2022, Medzilaborce, Slovakia). – Košice: EQUILIBRIA, s.r.o., Slovakia for IEP SAS. – 2023. – P. 48-59.
Abstract: The dynamics of the model quantum system consisting of two stationary identical two-level atoms, one of which is irradiated by a real photons field. The influence of states damping on the process of quantum information transfer between two atoms qubits at arbitrary distances is studied, taking into account the retarded dipole-dipole interaction of atoms. Under rather general assumptions, the system of non-stationary equations is obtained that describes the evolution of the amplitudes of possible states of the compound system “atomA(1) + atomA(2) + field” in symmetric and antisymmetric channels of interaction of an atom pair with the field of real photons. For the first time, the combined influence of retarded dipole-dipole interaction and state damping effects on the process of transmission of quantum information from one atom qubit to another at arbitrary interatomic distances is investigated.
Type: Text
Publication type: Стаття
URI: https://dspace.uzhnu.edu.ua/jspui/handle/lib/56577
Appears in Collections:Наукові публікації кафедри диференціальних рівнянь та математичної фізики

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