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Fundamental and high-order anapoles in all-dielectric metamaterials via Fano-Feshbach modes competition

机译:通过FANO-Feshbach模式竞争中的所有介电超材料中的基本和高阶Anapoles

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One of the most fascinating possibilities enabled by metamaterials is the strong reduction of the electromagnetic scattering from nanostructures. In dielectric nanoparticles, the formation of a minimal scattering state at specific wavelengths is associated with the excitation of photonic anapoles, which represent a peculiar type of radiationless state and whose existence has been demonstrated experimentally. In this work, we investigate the formation of anapole states in generic dielectric structures by applying a Fano-Feshbach projection scheme, a general technique widely used in the study of quantum mechanical open systems. By expressing the total scattering from the structure in terms of an orthogonal set of internal and external modes, defined in the interior and in the exterior of the dielectric structure, respectively, we show how anapole states are the result of a complex interaction among the resonances of the system and the surrounding environment. We apply our approach to a circular resonator, where we observe the formation of higher-order anapole states, which are originated by the superposition of several internal resonances of the system.
机译:超材料使能的最令人迷人的可能性之一是从纳米结构的电磁散射的强烈降低。在介电纳米颗粒中,在比波长下形成最小散射状态与光子脂肪的激发相关,其代表特殊类型的辐射状态,并且实验证明其存在。在这项工作中,我们通过应用Fano-Feshbach投影方案来研究通用介质结构中的anaphole状态,这是普通的方法在Quantum机械开放系统研究中广泛应用的一般技术。通过在内部和外部模式的正交组和外部模式的正交和外部模式的方面表达来自结构的总散射,分别示出了anapole状态如何是谐振之间复杂相互作用的结果系统和周围环境。我们将我们的方法应用于圆形谐振器,在那里我们观察到更高阶anaphole状态的形成,该态度是由系统的几个内部共振的叠加来源的。

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