Quantum Coherence of Atoms with Dipole–Dipole Interaction and Collective Damping in the Presence of an Optical Field

dc.contributor.authorAlgarni, Mariam
dc.contributor.authorBerrada, Kamal
dc.contributor.authorAbdel-Khalek, Sayed
dc.contributor.authorETAL.
dc.date.accessioned2023-05-01T09:14:15Z
dc.date.accessioned2023-08-20T11:18:49Z
dc.date.available2023-05-01T09:14:15Z
dc.date.available2023-08-20T11:18:49Z
dc.date.issued2021-12
dc.description.abstractWe investigate the effect of the interatomic distances and thermal reservoir on the coherence dynamics of the atoms considering the dipole–dipole interaction (DDI) and collective damping effect (CDE). We show that the control and protection of the coherence are very sensitive to the interatomic distances and reservoir temperature. Furthermore, we explore the distance effect between atoms and reservoir temperature on the time evolution of the total quantum correlation between the two atoms. The obtained results could be useful to execute these quantum phenomena and also considered as a good indication to implement realistic experiments with optimal conditions.
dc.identifier.citationAlgarni, M., Berrada, K., Abdel-Khalek, S., & Eleuch, H. (2021). Quantum Coherence of Atoms with Dipole–Dipole Interaction and Collective Damping in the Presence of an Optical Field. Symmetry, 13(12), 2327.
dc.identifier.doihttps://doi.org/10.3390/sym13122327
dc.identifier.urihttps://edms.wexl.in/handle/1/4785
dc.subjectquantum dynamics
dc.subjectCollective damping
dc.subjectDipole–dipole interaction
dc.subjectQuantum coherence
dc.subjectTotal quantum correlation
dc.titleQuantum Coherence of Atoms with Dipole–Dipole Interaction and Collective Damping in the Presence of an Optical Fielden_US
dc.typeArticleen_US

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