The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field
The gain, absorption and dispersion properties of a probe field for a four level N-type atomic system with a normal vacuum and a squeezed vacuum fields is studied. Under such conditions that normal and squeezed vacuum-induced interference among decay channels is significant. Our study also reveals t...
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2021
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oai:doaj.org-article:c3009268585249fbbc51c93cf0ffa3972021-11-22T04:24:34ZThe steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field2211-379710.1016/j.rinp.2021.104977https://doaj.org/article/c3009268585249fbbc51c93cf0ffa3972021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2211379721009876https://doaj.org/toc/2211-3797The gain, absorption and dispersion properties of a probe field for a four level N-type atomic system with a normal vacuum and a squeezed vacuum fields is studied. Under such conditions that normal and squeezed vacuum-induced interference among decay channels is significant. Our study also reveals that the quantum interference will produce a remarkable effect on the absorption and dispersion properties of the system. A single squeezed vacuum is coupled to three transitions. Numerically the effect of the squeezing vacuum field parameters and the relative phases between the squeezed vacuum and the probe (strong) fields on the index of refraction is analyzed.A.M. AwadM.S. BadrA.A. El-RahmanElsevierarticleAbsorptionRefractive indexQuantum interferenePhysicsQC1-999ENResults in Physics, Vol 31, Iss , Pp 104977- (2021) |
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Absorption Refractive index Quantum interferene Physics QC1-999 |
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Absorption Refractive index Quantum interferene Physics QC1-999 A.M. Awad M.S. Badr A.A. El-Rahman The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field |
description |
The gain, absorption and dispersion properties of a probe field for a four level N-type atomic system with a normal vacuum and a squeezed vacuum fields is studied. Under such conditions that normal and squeezed vacuum-induced interference among decay channels is significant. Our study also reveals that the quantum interference will produce a remarkable effect on the absorption and dispersion properties of the system. A single squeezed vacuum is coupled to three transitions. Numerically the effect of the squeezing vacuum field parameters and the relative phases between the squeezed vacuum and the probe (strong) fields on the index of refraction is analyzed. |
format |
article |
author |
A.M. Awad M.S. Badr A.A. El-Rahman |
author_facet |
A.M. Awad M.S. Badr A.A. El-Rahman |
author_sort |
A.M. Awad |
title |
The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field |
title_short |
The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field |
title_full |
The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field |
title_fullStr |
The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field |
title_full_unstemmed |
The steady-state of probe susceptibility in a four-level N-type atomic system with a squeezed vacuum field |
title_sort |
steady-state of probe susceptibility in a four-level n-type atomic system with a squeezed vacuum field |
publisher |
Elsevier |
publishDate |
2021 |
url |
https://doaj.org/article/c3009268585249fbbc51c93cf0ffa397 |
work_keys_str_mv |
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_version_ |
1718418247412350976 |