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Mechanisms of fano resonances in coupled plasmonic systems

机译:耦合等离子体系统中的扇形共振机制

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Fano resonances in hybridized systems formed from the interaction of bright modes only are reported. Despite precedent works, we demonstrate theoretically and experimentally that Fano resonances can be obtained by destructive interference between two bright dipolar modes out of phase. A simple oscillator model is provided to predict and fit the far-field scattering. The predictions are verified with numerical calculations using a surface integral equation method for a wide range of geometrical parameters. The validity of the model is then further demonstrated with experimental dark-field scattering measurements on actual nanostructures in the visible range. A remarkable set of properties like crossings, avoided crossings, inversion of subradiant and superradiant modes and a plasmonic equivalent of a bound state in the continuum are presented. The nanostructure, that takes advantage of the combination of Fano resonance and nanogap effects, also shows high tunability and strong near-field enhancement. Our study provides a general understanding of Fano resonances as well as a simple tool for engineering their spectral features.
机译:仅在明亮模式的相互作用下形成的杂交系统中的Fano共振被报道。尽管有先例,但我们在理论上和实验上证明,可以通过两个异相的明亮偶极子模式之间的相消干涉来获得Fano共振。提供了一个简单的振荡器模型来预测和拟合远场散射。使用表面积分方程法对各种几何参数进行数值计算,可以对预测进行验证。然后通过在可见光范围内对实际纳米结构进行实验性暗场散射测量进一步证明了该模型的有效性。提出了一组非凡的特性,如交叉,避免交叉,亚辐射和超辐射模式的倒置以及连续体中束缚态的等离激元等效物。利用Fano共振和纳米间隙效应相结合的纳米结构,还显示出高可调性和强大的近场增强能力。我们的研究提供了对Fano共振的一般理解,以及用于设计其光谱特征的简单工具。

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