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Optomechanically induced transparency, amplification, and Fano resonance in a multimode optomechanical system with quadratic coupling

机译:具有二态耦合的多模光机系统中的光学机械诱导的透明度,放大和FANO共振

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We explore the optical response of a multimode optomechanical system with quadratic coupling to a weak probe field, where the cavity is driven by a strong control field and the two movable membranes are, respectively, excited by weak coherent mechanical driving fields. We study the two cases that the two movable membranes are degenerate and nondegenerate. For the degenerate case, it is shown that only one transparency window occurs and the transition between optomechanically induced transparency and Fano resonance can be realized by tuning the cavity-control field detuning. For the nondegenerate case, two transparency windows are observed and the absorption spectrum can switch between a single Fano resonance and double Fano resonances. Furthermore, we show that the output probe field can be greatly amplified or completely suppressed due to the complex interference effect by tuning the amplitude and phase of the mechanical driving fields. Our results can be extended to the optomechanical system with multiple membranes, which enables us to control the light propagation more flexibly.
机译:我们探讨了多模光机系统的光学响应,其具有二次耦合到弱探针域,其中腔由强控制场驱动,并且分别由弱相干机械驱动场激发的两个可动膜。我们研究了两种可动膜的两种情况,即堕落和非备注。对于退化的情况,示出仅发生一个透明度窗口并且可以通过调谐腔控制场静脉来实现光学机械诱导的透明度和扇形谐振之间的过渡。对于非替补案例,观察到两个透明度窗口,并且吸收光谱可以在单个FANO谐振和双扇形共振之间切换。此外,我们表明,由于通过调谐机械驱动场的幅度和相位,因此可以大大放大或完全抑制输出探针场。我们的结果可以扩展到具有多个膜的光学力学系统,使我们能够更灵活地控制光传播。

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