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Plasmonic wavelength demultiplexers based on tunable Fano resonance in coupled-resonator systems

机译:耦合谐振器系统中基于可调Fano谐振的等离子波解复用器

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We investigate a plasmonic waveguide system using a 2-dimension finite element method, which consists of a metal-insulator-metal waveguide coupled with a stub resonator and a baffle. Numerical simulations results show that the sharp and asymmetric Fano-line shapes can be created by placing a baffle into the waveguide, and the main dependent factors of Fano-like spectra response are discussed. Based on the above results, we design three kinds of plasmonic waveguides with possible applications in wavelength demultiplexing. An analytic model based on the transfer matrix formalism is utilized to describe and explain this phenomenon. These results could be applied for developing ultra-compact wavelength division multiplexing devices in highly all-optical integration system.
机译:我们研究了使用二维有限元方法的等离激元波导系统,该系统包括与短截线谐振器和挡板耦合的金属-绝缘体-金属波导。数值模拟结果表明,通过将导流板置于波导中,可以产生尖锐且不对称的Fano线形,并讨论了Fano类光谱响应的主要影响因素。基于以上结果,我们设计了三种等离激元波导,它们可能在波长解复用中得到应用。利用基于传递矩阵形式主义的分析模型来描述和解释这种现象。这些结果可用于开发高度全光集成系统中的超紧凑波分复用设备。

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