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Plasmonic Fano Resonances in Single-Layer Gold Conical Nanoshells

机译:单层金锥形纳米壳中的等离子法诺共振。

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摘要

Plasmonic Fano resonances arise in symmetric single-layer conical nanoshells, which can be switched on and off by changing the polarization of the incident electric field. By breaking the symmetry, higher-order dark hybridized modes emerge in the spectrum, which couple to the superradiant bright mode and induce higher-order plasmonic Fano resonances. From a comparison with spherical nanostructures, it comes out that single-layer conical nanoshells are found to be highly capable in the generation of higher-order Fano resonances with larger modulation depths in the optical spectra. Such nanostructures are also found to offer high values of figure of merit and contrast ratio due to which they are highly suitable for biological sensors.
机译:在对称的单层圆锥形纳米壳中会产生等离子Fano共振,可以通过改变入射电场的极化来打开和关闭它。通过打破对称性,光谱中出现了更高阶的暗杂化模式,这些模式与超辐射亮模式耦合并引发了更高阶的等离激元Fano共振。通过与球形纳米结构的比较,可以发现单层锥形纳米壳在光谱中具有更大调制深度的情况下,具有更高的Fano共振生成能力。还发现这种纳米结构提供高品质因数和对比度的值,因为它们非常适合于生物传感器。

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