RUS  ENG
Full version
JOURNALS // Vestnik Samarskogo Universiteta. Estestvenno-Nauchnaya Seriya // Archive

Vestnik SamU. Estestvenno-Nauchnaya Ser., 2024 Volume 30, Issue 1, Pages 82–95 (Mi vsgu730)

Physics

Dynamics of entangled Greenberger — Horne — Zeilinger states in three qubits thermal Tavis — Cummings model

A. R. Bagrov, E. K. Bashkirov

Samara National Research University, Samara, Russian Federation

Abstract: In this paper, we investigated the dynamics of systems of two and three identical qubits interacting resonantly with a selected mode of a thermal field of a lossless resonator. We found solutions of the quantum time-dependent Liouville equation for various three- and two-qubit entangled states of qubits. Based on these solutions, we calculated the criterion of the qubit entanglement — fidelity. The results of numerical calculations of the fidelity showed that increasing the average number of photons in a mode leads to a decrease in the maximum degree of entanglement. It is shown that the two-qubit entangled state is more stable with respect to external noise than the three-qubit entangled Greenberger — Horne — Zeilinger states ($GHZ$). Moreover, a genuine entangled $GHZ$-state is more stable to noise than a $GHZ$-like entangled state.

Keywords: qubits, three qubits, Greenberger –– Horne –– Zeilinger states, resonance interaction, cavity, thermal field, entanglement, fidelity.

UDC: 517.9; 519.7; 530.145.83

Received: 25.12.2023
Revised: 01.02.2024
Accepted: 28.02.2024

DOI: 10.18287/2541-7525-2024-30-1-82-95



© Steklov Math. Inst. of RAS, 2024