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Theoretical study of a multichannel plasmonic waveguide notch filter with double-sided nanodisk and two slot cavities

机译:具有双面纳米盘和两个缝隙腔的多通道等离子体波导陷波滤波器的理论研究

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Based on the transmission characteristics of surface plasmonic subwavelength structure, a multichannel plasmonic notch filter comprising two slot resonators and a nano-disk cavity with the metal-insulator-metal waveguide is proposed and investigated numerically using the finite element method (FEM). It demonstrates that our proposed structure has the novel multichannel notch filter characteristics in optical regime. And the three resonance trough wavelengths of the notch filter can be tuned by changing the radius of the nano-disk and width of the slot, which is in good agreement with the results of the coupled mode theory (CMT). Moreover, the second resonance trough wavelength of the transmission spectrum increases in almost the same intervals of 30?nm when the radius of nano-disk cavity increases in intervals of 10?nm, showing a Fano line and an obvious red-shift. At the third resonance trough, the results show that the plasmon-induced transparency (PIT) is produced. And the PIT response is strongly influenced by the separation gap between the adjacent slot cavities. Additionally, the FOM*(figure of merit) and sensitivity of this structure can be as high as 99 and 750?nm/RIU, respectively. The results of this study not only present a tunable multichannel plasmonic notch filter, but also aid in developing ultra-compact refractive index sensor in optical highly integration circuits.
机译:基于表面等离子亚波长结构的传输特性,提出了一种包含两个缝隙谐振器和一个带有金属-绝缘体-金属波导的纳米盘腔的多通道等离子陷波滤波器,并利用有限元方法进行了数值研究。证明了我们提出的结构在光学方面具有新颖的多通道陷波滤波器特性。陷波滤波器的三个共振谷波长可以通过改变纳米盘的半径和缝隙的宽度来调整,这与耦合模式理论(CMT)的结果非常吻合。此外,当纳米盘腔的半径以10μnm的间隔增加时,透射光谱的第二共振谷波长以几乎相同的30μnm的间隔增加,显示出法诺线和明显的红移。在第三个共振谷处,结果表明产生了等离子体激元诱导的透明性(PIT)。而且,PIT响应受相邻槽腔之间的分离间隙的强烈影响。此外,该结构的FOM *(品质因数)和灵敏度分别高达99和750?nm / RIU。这项研究的结果不仅提出了可调谐的多通道等离子体陷波滤波器,而且还有助于开发光学高度集成电路中的超紧凑型折射率传感器。

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