首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Independently controllable multiple Fano resonances in side-coupled MDM structure and its applications for sensing and wavelength demultiplexing
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Independently controllable multiple Fano resonances in side-coupled MDM structure and its applications for sensing and wavelength demultiplexing

机译:独立可控制的侧面耦合MDM结构中的多个FANO共振及其用于感测和波长多路分解的应用

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摘要

Tunable single and multiple Fano resonances are investigated theoretically and numerically in a plasmonic structure, which consists of a cavity (or cavities) side-coupled with a defective metal-dielectric-metal (MDM) waveguide. The results show the Fano resonances originate from the interference between discrete states and a continuum state. These Fano resonances can be independently tuned by adjusting the corresponding cavity parameters. This structure can be utilized to achieve ultrasensitive plasmonic sensor yields with a sensitivity of 1400 nm/RIU. The highest figure of merit (FOM) similar to 1.75 x 10(4) is obtained by optimizing structure. Furthermore, compact and high wavelength resolution plasmonic 1 x 2 and 1 x 3 wavelength demultiplexers based on Fano resonances are designed and investigated. This compact and flexible structure has significant applications for sensing, switching, wavelength selecting, as well as constructing highly integrated optical circuits and complex waveguide networks.
机译:理论上和多个FANO谐振在等离子体结构中理论上和数量地研究了可调谐的单个和多个FANO共振,该等离子体结构包括与缺陷的金属介质 - 金属(MDM)波导侧耦合的腔(或腔)组成。结果表明Fano共振源自离散状态与连续状态之间的干扰。这些扇形共振可以通过调节相应的腔参数来独立调整。该结构可用于实现具有1400nm / Riu的灵敏度的超敏性等离子体传感器产量。通过优化结构获得类似于1.75×10(4)的最高优点(FOM)的数字。此外,设计并研究了基于Fano谐振的紧凑且高波长分辨率的等离子体1×2和1×3波长多路分解器。这种紧凑且柔性的结构具有用于感测,切换,波长选择的显着应用,以及构建高度集成的光电路和复杂的波导网络。

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