Inversionless gain via six-wave mixing and the investigation of distributed feedback
In the present paper, we investigate the spectral-line enhancement of a coherently driven treble-Λ type atomic system. The numerical results show that the amplitudes and the amplification region of probe fields can be all-optically manipulated by modulating the detunings and intensities of coupling...
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Published in | Physics letters. A Vol. 381; no. 18; pp. 1620 - 1623 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
10.05.2017
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Abstract | In the present paper, we investigate the spectral-line enhancement of a coherently driven treble-Λ type atomic system. The numerical results show that the amplitudes and the amplification region of probe fields can be all-optically manipulated by modulating the detunings and intensities of coupling fields. In this case, we trap the cold atoms of treble-Λ type in a one-dimensional optical lattice to study the intensity envelopes by the modulation of gain or simultaneous modulation of gain and index.
•There are three advantages in this model.•Firstly, it can simultaneously control the three-color probe fields.•Secondly, it allows synchronous nonlinear manipulation of treble-light signals at one network node.•Thirdly, it can be realized distributed feedback lasers. |
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AbstractList | In the present paper, we investigate the spectral-line enhancement of a coherently driven treble-Λ type atomic system. The numerical results show that the amplitudes and the amplification region of probe fields can be all-optically manipulated by modulating the detunings and intensities of coupling fields. In this case, we trap the cold atoms of treble-Λ type in a one-dimensional optical lattice to study the intensity envelopes by the modulation of gain or simultaneous modulation of gain and index.
•There are three advantages in this model.•Firstly, it can simultaneously control the three-color probe fields.•Secondly, it allows synchronous nonlinear manipulation of treble-light signals at one network node.•Thirdly, it can be realized distributed feedback lasers. |
Author | Yang, Hong Zou, Xu Zhang, Yan Zhang, Ting-Gui |
Author_xml | – sequence: 1 givenname: Hong surname: Yang fullname: Yang, Hong organization: College of Physics and Electronic Engineering, Hainan Normal University, Haikou, 571158, PR China – sequence: 2 givenname: Ting-Gui surname: Zhang fullname: Zhang, Ting-Gui organization: School of Mathematics and Statistics, Hainan Normal University, Haikou, 571158, PR China – sequence: 3 givenname: Xu surname: Zou fullname: Zou, Xu organization: College of Physics and Electronic Engineering, Hainan Normal University, Haikou, 571158, PR China – sequence: 4 givenname: Yan surname: Zhang fullname: Zhang, Yan email: zhangy345@nenu.edu.cn organization: School of Physics and Center for Quantum Sciences, Northeast Normal University, Changchun 130024, PR China |
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Snippet | In the present paper, we investigate the spectral-line enhancement of a coherently driven treble-Λ type atomic system. The numerical results show that the... |
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SubjectTerms | Distributed feedback Inversionless gain Six-wave mixing |
Title | Inversionless gain via six-wave mixing and the investigation of distributed feedback |
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