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Tunable band-stop plasmonic waveguide filter with symmetrical multiple-teeth-shaped structure

机译:具有对称多齿形结构的可调谐带阻等离子波导滤波器

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摘要

A nanometeric plasmonic filter with a symmetrical multiple-teeth-shaped structure is investigated theoretically and numerically. A tunable wide bandgap is achievable by adjusting the depth and number of teeth. This phenomenon can be attributed to the interference superposition of the reflected and transmitted waves from each tooth. Moreover, the effects of varying the number of identical teeth are also discussed. It is found that the bandgap width increases continuously with the increasing number of teeth. The finite difference time domain method is used to simulate and compute the coupling of surface plasmon polariton waves with different structures in this Letter. The plasmonic waveguide filter that we propose here may have meaningful applications in ultra-fine spectrum analysis and high-density nanoplasmonic integration circuits. (C) 2016 Optical Society of America
机译:从理论和数值上研究了具有对称多齿形结构的纳米等离激元滤波器。通过调节齿的深度和数量可以实现可调的宽带隙。这种现象可归因于来自每个牙齿的反射波和透射波的干涉叠加。此外,还讨论了改变相同齿数的影响。发现带隙宽度随着齿数的增加而连续增加。在本文中,有限差分时域方法用于模拟和计算具有不同结构的表面等离激元极化波的耦合。我们在这里提出的等离子体波导滤波器可能在超精细光谱分析和高密度纳米等离子体积分电路中具有有意义的应用。 (C)2016美国眼镜学会

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