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Controllable Optical Bistability and Four-Wave Mixing in a Photonic-Molecule Optomechanics

机译:光子分子光力学中的可控光学双稳态和四波混频

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摘要

We theoretically investigate the nonlinear optical phenomena including optical bistability and four-wave mixing (FWM) process in a composite photonic-molecule cavity optomechanical system. The photonic-molecule cavity consisted of two whispering gallery mode (WGM) microcavities, where one WGM cavity is an optomechanical cavity with high-cavity dissipation κ and the other WGM cavity is an auxiliary ordinary optical cavity with high-quality factor (Q). Controlling the parameters of the system, such as the coupling strength J between the two cavities, the decay rate ratio δ of the two cavities, and the pump power P, the optical bistability can be controlled. Furthermore, the FWM process which presents the normal mode-splitting is also investigated in the FWM spectrum under different parameter regimes. Our study may provide a further insight of nonlinear phenomena in the composite photonic-molecule optomechanic systems.
机译:我们从理论上研究了在复合光子分子腔光学机械系统中的非线性光学现象,包括光学双稳性和四波混合(FWM)过程。光子分子腔由两个耳语画廊模式(WGM)微腔组成,其中一个WGM腔是具有高腔耗散κ的光机械腔,另一个WGM腔是具有高质量因数(Q)的辅助普通光学腔。控制系统的参数,例如两个腔之间的耦合强度J,两个腔的衰减率比δ和泵浦功率P,可以控制光学双稳态。此外,还研究了在不同参数方案下在FWM频谱中呈现正常模式分裂的FWM过程。我们的研究可能为复合光子-分子光机电系统中的非线性现象提供进一步的见解。

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