Photonics Research, Volume. 5, Issue 5, 450(2017)

Coupled quantum molecular cavity optomechanics with surface plasmon enhancement

Jian Liu1,2 and Ka-Di Zhu1,2、*
Author Affiliations
  • 1Key Laboratory of Artificial Structures and Quantum Control (Ministry of Education), 800 DongChuan Road, Shanghai 200240, China
  • 2School of Physics and Astronomy, Shanghai Jiao Tong University, 800 DongChuan Road, Shanghai 200240, China
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    Figures & Tables(4)
    (a) Diagram of surface plasmon cavity optomechanical system driven by a strong pump laser and probed by a weak signal laser. The double molecules reside on the substrate. (b) Molecules of thiophenol and GBT in their lowest energy conformations. (c) Interacting molecules with R the intermolecular distance, and x1 and x2 the distances between different charges for the instantaneous dipoles.
    (a) Transmission spectrum of the probe beam as a function of the probe–pump detuning with different van der Waals coupling rates for the same molecules (GBT). We choose λ=0,0.2, and 0.4 THz; and Δp=0. The other parameters are Ωpu2=0.22 eV2, ω1=ω2=32.2 THz, g1=g2=70 GHz, κ/(2π)=33 THz, and γ1,2/(2π)=0.06 THz. (b) Energy levels of the coupled system corresponding to the transmission peak shift. (c) Linear relationship between frequency shift and coupling rate.
    (a) Transmission spectrum of the probe beam as a function of the probe–pump detuning with various van der Waals coupling rates for different two molecules (thiophenol and GBT). We choose λ=0,0.1,and 0.4 THz; Δp=0; Ωpu2=0.22 eV2; and ω1=32.1 THz, ω2=32.2 THz, g1=4.7 GHz, g2=70 GHz, κ/(2π)=33 THz, γ1,2/(2π)=0.06 THz. (b) Energy levels of the coupled system corresponding to the enhanced peak splitting. (c) Linear relationship between split distance D and coupling rate λ.
    Transmission and reflection spectrum of a signal beam with different range between molecules (thiophenol and GBT) in the case of Ωpu2=0.09 eV2. Other parameters are same with Fig. 2.
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    Jian Liu, Ka-Di Zhu. Coupled quantum molecular cavity optomechanics with surface plasmon enhancement[J]. Photonics Research, 2017, 5(5): 450

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    Paper Information

    Category: Surface Plasmons

    Received: Mar. 22, 2017

    Accepted: Jun. 27, 2017

    Published Online: Sep. 12, 2017

    The Author Email: Ka-Di Zhu (zhukadi@sjtu.edu.cn)

    DOI:10.1364/PRJ.5.000450

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