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JOURNALS // Vestnik Samarskogo Universiteta. Estestvenno-Nauchnaya Seriya // Archive

Vestnik SamU. Estestvenno-Nauchnaya Ser., 2025 Volume 31, Issue 1, Pages 86–98 (Mi vsgu766)

Physics

Influence of initial atomic coherence and direct coupling on qubits entanglement in two-qubit Tavis — Cummings model

A. Othman, A. R. Farhutdinova, E. K. Bashkirov

Samara National Research University, Samara, Russian Federation

Abstract: The exact dynamics of a model consisting of two identical qubits interacting non-resonantly with the electromagnetic field mode of an ideal resonator via single-photon transitions is found in the presence of direct Ising interaction of qubits. The exact solution is used to calculate the two-qubit negativity of qubits in the case of a coherent initial state of qubits and a thermal state of the resonator field. It is shown that in the case of resonant interaction of qubits with the field, the initial atomic coherence leads to a significant increase in the maximum degree of entanglement. The inclusion of direct Ising interaction of qubits can significantly enhance the entanglement of qubits in both coherent and non-coherent initial states of qubits. In the case of non-resonant interaction of qubits and the resonator field, the detuning leads to a weakening of the effect of atomic coherence on the dynamics of qubit entanglement.

Keywords: qubits, coherent qubits state, cavity, thermal field, entanglement, negativity, Izing coupling.

UDC: 517.9, 519.7, 530.145.83

Received: 11.01.2025
Accepted: 07.04.2025

DOI: 10.18287/2541-7525-2025-31-1-86-98



© Steklov Math. Inst. of RAS, 2025