Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity
We study the classically driven two-level system with its center-of-mass motion vibrating in a harmonic trap and coupled to the photons in a two-mode cavity. The first mode is resonant to the driving field and an electronic transition. The second mode is off-resonant, forming a vibrational-assisted...
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my.um.eprints.160772019-10-09T07:58:52Z http://eprints.um.edu.my/16077/ Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity Ooi, C.H.R. Sete, E.A. Liu, W.M. Q Science (General) QC Physics We study the classically driven two-level system with its center-of-mass motion vibrating in a harmonic trap and coupled to the photons in a two-mode cavity. The first mode is resonant to the driving field and an electronic transition. The second mode is off-resonant, forming a vibrational-assisted Raman transition. Using an exact numerical method, we investigate the quantum dynamics of the light emitted by the atom and the cavity modes. We analyze and compare the corresponding atomic and intracavity photon spectra for a range of the driving laser field and the cavity coupling strengths. The results provide better understanding of the effects of the laser field and atom-cavity coupling strengths on quantum interference effects and photon blockade, particularly the Mollow's triplet and the Autler-Townes splitting in the good and bad cavity limits. American Physical Society 2015 Article PeerReviewed Ooi, C.H.R. and Sete, E.A. and Liu, W.M. (2015) Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity. Physical Review A, 92 (6). 063847. ISSN 2469-9926 https://doi.org/10.1103/PhysRevA.92.063847 doi:10.1103/PhysRevA.92.063847 |
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Q Science (General) QC Physics Ooi, C.H.R. Sete, E.A. Liu, W.M. Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity |
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We study the classically driven two-level system with its center-of-mass motion vibrating in a harmonic trap and coupled to the photons in a two-mode cavity. The first mode is resonant to the driving field and an electronic transition. The second mode is off-resonant, forming a vibrational-assisted Raman transition. Using an exact numerical method, we investigate the quantum dynamics of the light emitted by the atom and the cavity modes. We analyze and compare the corresponding atomic and intracavity photon spectra for a range of the driving laser field and the cavity coupling strengths. The results provide better understanding of the effects of the laser field and atom-cavity coupling strengths on quantum interference effects and photon blockade, particularly the Mollow's triplet and the Autler-Townes splitting in the good and bad cavity limits. |
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Article |
author |
Ooi, C.H.R. Sete, E.A. Liu, W.M. |
author_facet |
Ooi, C.H.R. Sete, E.A. Liu, W.M. |
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Ooi, C.H.R. |
title |
Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity |
title_short |
Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity |
title_full |
Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity |
title_fullStr |
Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity |
title_full_unstemmed |
Quantum dynamics and spectra of vibrational Raman-resonance fluorescence in a two-mode cavity |
title_sort |
quantum dynamics and spectra of vibrational raman-resonance fluorescence in a two-mode cavity |
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American Physical Society |
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2015 |
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http://eprints.um.edu.my/16077/ https://doi.org/10.1103/PhysRevA.92.063847 |
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1648736139760107520 |
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