Scattering and radiation singularities in epsilon-near-zero structures

F. Monticone, A. Alú
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Abstract

We study the extreme and singular electromagnetic response of epsilon-near-zero (ENZ) structures. In particular, we show that ENZ-dielectric-ENZ multilayers can be designed to support: (a) singularities in their scattering spectrum, known as embedded eigenstates, which can be exploited for extreme light trapping in open systems, as well as for enhanced sensing; (b) peaks in their photonic density of states, or Van-Hove singularities, which determine strong enhancement of emission/radiation from small sources. Our findings shed light on the physics of these extreme electromagnetic effects, and represent an important step toward their application in various practical scenarios.
近零结构中的散射和辐射奇点
研究了epsilon-near-zero (ENZ)结构的极端和奇异电磁响应。特别是,我们表明enz -介电- enz多层可以设计成支持:(a)散射光谱中的奇点,称为嵌入本征态,可以用于开放系统中的极端光捕获,以及增强传感;(b)态光子密度的峰值,或范霍夫奇点,这决定了小源发射/辐射的强增强。我们的发现揭示了这些极端电磁效应的物理学原理,并代表了它们在各种实际情况下应用的重要一步。
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