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Omnidirectional optical attractor in structured gap-surface plasmon waveguide

机译:结构化间隙表面等离子体激元波导中的全向光学吸引子

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摘要

An optical attractor based on a simple and easy to fabricate structured metal-dielectric-metal (SMDM) waveguide is proposed. The structured waveguide has a variable thickness in the vicinity of an embedded microsphere and allow for adiabatic nano-focusing of gap-surface plasmon polaritons (GSPPs). We show that the proposed system acts as an omnidirectional absorber across a broad spectral range. The geometrical optics approximation is used to provide a description of the ray trajectories in the system and identify the singularity of the deflection angle at the photon sphere. The analytical theory is validated by full-wave numerical simulations demonstrating adiabatic, deep sub-wavelength focusing of GSPPs and high local field enhancement. The proposed structured waveguide is an ideal candidate for the demonstration of reflection free omnidirectional absorption of GSPP in the optical and infrared frequency ranges.
机译:提出了一种基于结构简单的金属-介电-金属(SMDM)波导的光学吸引子。结构化波导在嵌入式微球附近具有可变的厚度,并允许间隙表面等离子体激元极化子(GSPPs)的绝热纳米聚焦。我们表明,所提出的系统可在整个光谱范围内用作全向吸收器。几何光学近似用于提供系统中光线轨迹的描述,并识别光子球面上偏转角的奇异性。该分析理论已通过全波数值模拟得到验证,该数值模拟表明了GSPP的绝热,深亚波长聚焦和高局部场增强。所提出的结构化波导是展示GSPP在光学和红外频率范围内无反射全向吸收的理想选择。

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