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Tunable Fano resonances via optomechanical effect and gain -loss ratio in coupled microresonators

机译:通过光学力学效应和耦合微谐振器中的Gain-ros比率调谐Fano共振

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摘要

We propose a system consisting of two coupled optical whispering-gallery-mode (WGM) microresonators to investigate the Fano resonances of the output probe field. The WGM microresonators are driven coherently by a strong pump field and a weak probe field via tapered fibers (Peng et al 2014 Nat. Phys. 10 394). By making one of the resonators optomechanical and properly adjusting the coupling strength between the microresonators, we tune the Fano line shapes by varying the optomechanical strength. It is found that Fano line shapes appear on introducing optomechanical effects into the system. Interestingly enough, the gain-loss ratio in the proposed system has a key role in tuning a single Fano line shape to double. For the PT-symmetric phase, we investigate a more prominent double Fano line shape. The adjustment from single Fano line shape to double via the gain-loss ratio is the major part of this work. Our results can be used for all-optical switching and high-sensitivity sensing.
机译:我们提出了一种由两个耦合光学窃窃私歌廊模式(WGM)微谐振器组成的系统,以研究输出探针场的FANO共振。 通过强泵场和通过锥形纤维(Peng等人2014 NAT,通过强泵场和弱探针场连贯驱动WGM微谐振器。 通过使谐振器的一个光学机械且适当地调节微管之间的耦合强度,我们通过改变光学力学强度来调谐Fano线形状。 发现Fano线形状出现在将光学力学效应引入系统上。 有趣的是,所提出的系统中的增益损失比在调整单个Fano线形状到加倍时具有关键作用。 对于PT对称阶段,我们研究了更加突出的双扇形线形状。 通过增益损失比从单个Fano线形状进行调整,是这项工作的主要部分。 我们的结果可用于全光开关和高灵敏度感测。

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