首页|Entanglement of three-level atomic system and sponta-neous emission fields in a vacuum and near the 1D photonic crystal band gap

Entanglement of three-level atomic system and sponta-neous emission fields in a vacuum and near the 1D photonic crystal band gap

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The time evolution of the quantum entropy in a GaAs/AlAs one-dimensional photonic crystal(IDPC)with an atomic system defect layer is investigated in this work.The entanglement between atomic system and their spontaneous emis-sion fields near the edge of the photonic band gap(PBG)is coherently controlled by the coupling field.Comparison between the atom-photon entanglement of the atomic system in the vacuum surrounding and that near the PBG of the IDPC shows that the degree of entanglement strongly depends on the PBG.We find that degree of entanglement is strongly dependent on the intensity and detuning of the coupling and probe fields.Furthermore,the effect of the phase difference between applied fields on the atom-photon entanglement is studied.The potentially possible technological applications can be provided by the proposed model in the quantum optics and quantum communications based on photonic crystal.

Jalil Shiri、Javad Khalilzadeh、Seyyed Hossein Asadpour

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Department of Photonics,Faculty of Sciences,Imam Hossein University,Tehran,Iran

Young Researchers and Elite Club,Central Tehran Branch,Islamic Azad University,Tehran,Iran

2022

光电子快报(英文版)
天津理工大学

光电子快报(英文版)

EI
影响因子:0.641
ISSN:1673-1905
年,卷(期):2022.18(11)
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