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Tunable, directional and wavelength selective plasmonic nanoantenna arrays

机译:可调谐,方向性和波长选择性的等离激元纳米天线阵列

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摘要

Linear arrays of noble metal nanoparticles, supporting Bragg plasmonic resonances, are proposed as optical nanoantennae. Electrodynamic calculations show that tunable, directional and wavelength selective emission enhancement is obtained throughout the visible and near-infrared spectrum by varying the dielectric environment and the array geometrical parameters, and thus tuning the Bragg modes. Large quantum efficiency enhancements are possible even in the case of poor emitters ( 1% intrinsic efficiency), spanning wavelengths that are relevant in lighting (lambda similar or equal to 400 nm) and telecommunication (lambda similar or equal to 1.5 mu m) applications. Nanoantenna array angular emission is highly directional and extremely sensitive to the array geometrical parameters and the dielectric environment.
机译:提出了支持布拉格等离子体共振的贵金属纳米粒子的线性阵列作为光学纳米天线。电动力学计算表明,通过改变介电环境和阵列几何参数,从而调整布拉格模式,可以在整个可见光谱和近红外光谱中获得可调的,定向的和波长选择性的发射增强。即使在不良的发射器(固有效率为1%),跨越与照明(λ等于或等于400 nm)和电信(λ等于或等于1.5μm)应用相关的波长的情况下,也可能会大幅提高量子效率。纳米天线阵列的角发射是高度定向的,并且对阵列的几何参数和介电环境极为敏感。

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