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首页> 外文期刊>Plasmonics >Subradiant, Superradiant Plasmon Modes and Fano Resonance in a Multilayer Nanocylinder Array Standing on a Thin Metal Film
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Subradiant, Superradiant Plasmon Modes and Fano Resonance in a Multilayer Nanocylinder Array Standing on a Thin Metal Film

机译:站立在金属薄膜上的多层纳米圆柱阵列中的亚辐射,超辐射等离激元模态和法诺共振

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摘要

The optical properties of a novel nanostructure consisting of a hexagonal array of aligned vertically three-layered metal-dielectric-metal nanodisks on a silver film are theoretically studied through the finite-difference time-domain method. The novel nanostructure exhibits three obvious optical transmission bands due to the excitation of subradiant plasmon modes, superradiant plasmon modes, and Fano resonances. Surface plasmon polaritons of the underlying Ag film also play a significant role on these three optical transmission bands via coupling with localized surface plasmons of nanodisk pairs. Moreover, the nanostructure also exhibits a good tunability of optical response by modifying the sizes of cylinders, the thickness of underlying metal film, and the dielectric constant of middle layer. These results demonstrate the nanostructure with great advantages in optical sensors and filters.
机译:通过有限差分时域方法,从理论上研究了一种新颖的纳米结构的光学性质,该结构由排列在银膜上的垂直三层金属-介电-金属纳米圆盘的六边形阵列组成。由于亚辐射等离子体激元模,超辐射等离子体激元模和法诺共振的激发,该新颖的纳米结构表现出三个明显的光传输带。通过与纳米盘对的局部表面等离激元耦合,下面的Ag膜的表面等离激元极化子在这三个光学传输带中也起着重要作用。此外,通过改变圆柱体的尺寸,下面的金属膜的厚度以及中间层的介电常数,纳米结构还表现出良好的光学响应可调性。这些结果证明了纳米结构在光学传感器和滤光片中具有很大的优势。

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