Tavis–Cummings Model with Moving Atoms

dc.contributor.authorAbdel-Khalek, Sayed
dc.contributor.authorBerrada, Kamal
dc.contributor.authorM. Khalil, Eied
dc.contributor.authorEleuch, Hichem
dc.contributor.authorF. Obada, Abdel-Shafy
dc.contributor.authorReda, Esraa
dc.date.accessioned2023-05-02T07:13:37Z
dc.date.accessioned2023-08-20T11:26:47Z
dc.date.available2023-05-02T07:13:37Z
dc.date.available2023-08-20T11:26:47Z
dc.date.issued2021-04
dc.description.abstractIn this work, we examine a nonlinear version of the Tavis–Cummings model for two two-level atoms interacting with a single-mode field within a cavity in the context of power-law potentials. We consider the effect of the particle position that depends on the velocity and acceleration, and the coupling parameter is supposed to be time-dependent. We examine the effect of velocity and acceleration on the dynamical behavior of some quantumness measures, namely as von Neumann entropy, concurrence and Mandel parameter. We have found that the entanglement of subsystem states and the photon statistics are largely dependent on the choice of the qubit motion and power-law exponent. The obtained results present potential applications for quantum information and optics with optimal conditions.
dc.identifier.citationAbdel-Khalek, S., Berrada, K., Khalil, E. M., Eleuch, H., Obada, A. S. F., & Reda, E. (2021). Tavis–Cummings Model with Moving Atoms. Entropy, 23(4), 452.
dc.identifier.doihttps://doi.org/10.3390/e23040452
dc.identifier.urihttps://edms.wexl.in/handle/1/4897
dc.publisherTechno-Press:
dc.subjectPower-law potentials
dc.subjectEntanglement
dc.subjectTwo qubits
dc.subjectStatistical properties
dc.subjectConcurrence
dc.titleTavis–Cummings Model with Moving Atomsen_US

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