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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Plasmonic Nanoantennas:Angular Scattering Properties of Multipole Resonances in Noble Metal Nanorods
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Plasmonic Nanoantennas:Angular Scattering Properties of Multipole Resonances in Noble Metal Nanorods

机译:等离子体纳米天线:贵金属纳米棒中多极共振的角散射特性

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摘要

The scattering properties of multipole plasmon resonances sustained by silver and gold nanorods (NRs) are investigated using classical electrodynamics DDA (discrete dipole approximation) simulations.The angular distribution of the scattered light is examined as a function of the multipole order,NR length,noble metal nature,and dielectric environment.For a given multipole order,the dependence of the differential scattering cross section on the different variables is rationalized in terms of two different contributions to the differential scattering cross sections:the resonant wavelength and the Mueller matrix element S11.It was found that the magnitude of S11 for a given multipole order is mainly determined by its quantum scattering yield.By comparing the scattering patterns of finite cylinders with the radiation scattered by a point light source,it was possible to characterize and gain physical insight on the different resonance modes.
机译:使用经典的电动力学DDA(离散偶极子逼近)模拟研究了由银和金纳米棒(NRs)维持的多极等离子体激元共振的散射特性。检查了散射光的角度分布与多极阶,NR长度,贵族的关系对于给定的多极级,差分散射截面对不同变量的依赖性通过两个对差分散射截面的不同贡献而得以合理化:共振波长和穆勒矩阵元素S11。发现给定多极级的S11的大小主要取决于其量子散射率。通过比较有限圆柱的散射图和点光源散射的辐射,可以表征并获得物理上的见解。不同的共振模式。

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