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Ultrawide Bandgap and High Sensitivity of a Plasmonic Metal-Insulator-Metal Waveguide Filter with Cavity and Baffles

机译:超透压带隙和高灵敏度的等离子体金属 - 绝缘子 - 金属波导过滤器具有空腔和挡板

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摘要

A plasmonic metal-insulator-metal waveguide filter consisting of one rectangular cavity and three silver baffles is numerically investigated using the finite element method and theoretically described by the cavity resonance mode theory. The proposed structure shows a simple shape with a small number of structural parameters that can function as a plasmonic sensor with a filter property, high sensitivity and figure of merit, and wide bandgap. Simulation results demonstrate that a cavity with three silver baffles could significantly affect the resonance condition and remarkably enhance the sensor performance compared to its counterpart without baffles. The calculated sensitivity (S) and figure of merit (FOM) in the first mode can reach 3300.00 nm/RIU and 170.00 RIU−1. Besides, S and FOM values can simultaneously get above 2000.00 nm/RIU and 110.00 RIU−1 in the first and second modes by varying a broad range of the structural parameters, which are not attainable in the reported literature. The proposed structure can realize multiple modes operating in a wide wavelength range, which may have potential applications in the on-chip plasmonic sensor, filter, and other optical integrated circuits.
机译:使用有限元方法和由腔谐振模式理论理论描述的由一个矩形腔和三个银挡板组成的等离子体金属 - 绝缘体 - 金属波导过滤器。所提出的结构显示了一种简单的形状,具有少量结构参数,可以用作具有过滤器特性,高灵敏度和优异图谱和宽带隙的等离子体传感器的结构参数。模拟结果表明,具有三个银挡板的腔可能会显着影响共振状态,并与其对应于没有挡板的对应物显着提高传感器性能。第一模式中的计算灵敏度(FOM)可以达到3300.00nm / RiU和170.00 Riu-1。此外,S和FOM值可以通过改变广泛的结构参数同时在第一和第二模式中同时获得高于2000.00nm / RiU和110.00的RIU-1,这在报告的文献中不可能实现。所提出的结构可以实现在宽波长范围内操作的多种模式,其可以具有在片上等离子体传感器,过滤器和其他光学集成电路中的潜在应用。

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