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Dark modes and Fano resonances in plasmonic clusters excited by cylindrical vector beams

机译:圆柱矢量束激发的等离子体群中的暗模和法诺共振

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摘要

Control of the polarization distribution of light allows tailoring the electromagnetic response of plasmonic particles. By rigorously extending the generalized multiparticle Mie theory, we show that focused cylindrical vector beams (CVB) can be used to efficiently excite dark plasmon modes in nanoparticle clusters. In addition to the small radiative damping and large field enhancement associated to dark modes, excitation with CVB can give place to unusual phenomenology like the formation of electromagnetic cold spots and the generation of Fano resonances in highly symmetric clusters. Overall, the results show the potential of CVB to tailor the plasmonic response of nanoparticle clusters in a unique way.
机译:控制光的偏振分布可以调整等离子体粒子的电磁响应。通过严格扩展广义多粒子Mie理论,我们表明聚焦圆柱矢量束(CVB)可用于有效激发纳米粒子簇中的暗等离子体激元模式。除了与暗模式相关的较小的辐射阻尼和较大的场增强之外,CVB激发还可以取代异常的现象学,例如电磁冷点的形成和高度对称簇中的Fano共振的产生。总体而言,结果表明CVB具有以独特的方式定制纳米颗粒簇的等离子体响应的潜力。

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