Advances in Mathematical Physics (Jan 2021)

Statistical Study of the Entanglement for Qubit Interacting with an Electromagnetic Field

  • Neveen Sayed-Ahmed,
  • M. M. Amein,
  • Taghreed M. Jawa,
  • Tahani A. Aloafi,
  • F. S. Bayones,
  • Azhari A. Elhag,
  • J. Bouslimi

DOI
https://doi.org/10.1155/2021/5571796
Journal volume & issue
Vol. 2021

Abstract

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A statistical method is applied to predict the behaviour of a quantum model consisting of a qubit interacting with a single-mode cavity field. The qubit is prepared in excited state while the field starts from the binomial distribution state. The wave function of the proposed model is obtained. A von Neumann entropy is used to investigate the behaviour of the entanglement between the field and the qubits. Moreover, the atomic Q and Wigner functions are used to identify the behaviour of the distribution in a phase space. The simulation method is used to estimate the parameters of the proposed model to reach the best results. A numerical study is performed to estimate the specific dependency of the binomial distribution state. The results of entanglement were compared with the atomic Q and Wigner functions. The results showed that there are many maximum values of entanglement periodically. The results also confirmed a correlation between von Neumann entropy, the atomic Q, and Wigner functions.