Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system
Abstract We study the absorption spectrum of a probe field by a Λ-type three-level system, which is coupled to a quantized control field through the two upper energy levels. The probe field is applied to the ground and the second excited states. When the quantized control field is in vacuum, we deri...
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2018-03-01
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doaj-e48830ecb6364b15b1926ea93fe232bd2020-12-08T03:46:29ZengNature Publishing GroupScientific Reports2045-23222018-03-018111510.1038/s41598-018-22666-2Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level systemJiang-hao Ding0Sai-nan Huai1Hou Ian2Yu-xi Liu3Institute of Microelectronics, Tsinghua UniversityInstitute of Microelectronics, Tsinghua UniversityInstitute of Applied Physics and Materials Engineering, University of MacauInstitute of Microelectronics, Tsinghua UniversityAbstract We study the absorption spectrum of a probe field by a Λ-type three-level system, which is coupled to a quantized control field through the two upper energy levels. The probe field is applied to the ground and the second excited states. When the quantized control field is in vacuum, we derive a threshold condition to discern vacuum induced transparency (VIT) and vacuum induced Autler-Townes splitting (ATS). We also find that the parameter changing from VIT to vacuum induced ATS is very similar to that from broken PT symmetry to PT symmetry. Moreover, we find the photon number resolved spectrum in the parameter regime of vacuum induced ATS when the mean photon number of the quantized control field is changed from zero (vacuum) to a finite number. However, there is no photon number resolved spectrum in the parameter regime of VIT even that the quantized control field contains the finite number of photons. Finally, we further discuss possible experimental realization.https://doi.org/10.1038/s41598-018-22666-2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiang-hao Ding Sai-nan Huai Hou Ian Yu-xi Liu |
spellingShingle |
Jiang-hao Ding Sai-nan Huai Hou Ian Yu-xi Liu Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system Scientific Reports |
author_facet |
Jiang-hao Ding Sai-nan Huai Hou Ian Yu-xi Liu |
author_sort |
Jiang-hao Ding |
title |
Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system |
title_short |
Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system |
title_full |
Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system |
title_fullStr |
Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system |
title_full_unstemmed |
Vacuum induced transparency and photon number resolved Autler-Townes splitting in a three-level system |
title_sort |
vacuum induced transparency and photon number resolved autler-townes splitting in a three-level system |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2018-03-01 |
description |
Abstract We study the absorption spectrum of a probe field by a Λ-type three-level system, which is coupled to a quantized control field through the two upper energy levels. The probe field is applied to the ground and the second excited states. When the quantized control field is in vacuum, we derive a threshold condition to discern vacuum induced transparency (VIT) and vacuum induced Autler-Townes splitting (ATS). We also find that the parameter changing from VIT to vacuum induced ATS is very similar to that from broken PT symmetry to PT symmetry. Moreover, we find the photon number resolved spectrum in the parameter regime of vacuum induced ATS when the mean photon number of the quantized control field is changed from zero (vacuum) to a finite number. However, there is no photon number resolved spectrum in the parameter regime of VIT even that the quantized control field contains the finite number of photons. Finally, we further discuss possible experimental realization. |
url |
https://doi.org/10.1038/s41598-018-22666-2 |
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