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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >The sensing characteristics based on electromagnetically-induced transparency-likere sponse in double-sided stub and a nanodisk waveguide system
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The sensing characteristics based on electromagnetically-induced transparency-likere sponse in double-sided stub and a nanodisk waveguide system

机译:基于电磁诱导的双面存根和纳米磁盘波导系统的传感特性

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摘要

We propose a novel metal insulator metal (MIM) waveguide structure consisting of a stub and a double side-coupled nanodisk. Its electromagnetically-induced transparency (EIT)-like response and transmission properties are numerically investigated by the finite element method (FEM). Numerical simulation results show that the EIT-like phenomenon appears in the transmission spectra. The transparency window can not only be manipulated by changing the radius of the nanodisk and the height of the stub, but also appear redshifted with the increasing of the refractive index n. Furthermore, the MIM waveguide structure is easy to yield a high sensitivity of 1200 nm/RIU with a figure of merit about 2.2 x 10(4), which may be applied to nanosensors. These results would help us design the high-performance plasmonic devices based on the EIT-like response.
机译:我们提出了一种新的金属绝缘金属(MIM)波导结构,由短截线和双侧耦合纳米磁盘组成。 其电磁诱导的透明度(EIT) - 样响应和传输性能通过有限元方法(FEM)进行数值研究。 数值模拟结果表明,透射光谱中的EIT样现象出现。 透明度窗口不仅可以通过改变纳米磁盘的半径和短截线的高度而被操纵,而且随着折射率n的增加,也显示出红移。 此外,MIM波导结构易于产生1200nm / Riu的高灵敏度,其值为约2.2×10(4)的图,其可以应用于纳米调色体。 这些结果将帮助我们根据类似EIT样响应设计高性能等离子体器件。

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