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Multiple Fano resonances with flexible tunablity based on symmetry-breaking resonators

机译:基于对称破坏谐振器的灵活可变性的多个Fano谐振

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摘要

A symmetry-breaking nanostructure is proposed to achieve multiple Fano resonances. The nanostructure consists of an asymmetric ring resonator coupled to a plasmonic waveguide. The broken symmetry is introduced by deviating the centers of regular ring. New resonant modes that are not accessible through a regular symmetric ring cavity are excited. Thus, one asymmetric cavity can provide more than one resonant mode with the same mode order. As a result, the interval of Fano resonances is greatly reduced. By combining different rings with different degrees of asymmetry, multiple Fano resonances are generated. Those Fano resonances have different dependences on structural parameters due to their different physical origin. The resonance frequency and resonance peak number can be arbitrarily adjusted by changing the degree of asymmetry. This research may provide new opportunities to design on-chip optical devices with great tuning performance.
机译:提出了一种破坏对称性的纳米结构,以实现多个Fano共振。纳米结构由耦合到等离子体波导的不对称环形谐振器组成。通过偏离规则环的中心来引入破坏的对称性。通过规则的对称环形腔无法访问的新谐振模式被激发。因此,一个不对称腔可以以相同的模序提供一个以上的谐振模。结果,大大减小了法诺共振的间隔。通过组合具有不同不对称度的不同环,可以生成多个Fano共振。那些法诺共振由于其不同的物理起源而对结构参数具有不同的依赖性。共振频率和共振峰数可以通过改变不对称度来任意地调整。这项研究可能为设计具有出色调谐性能的片上光学设备提供新的机会。

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