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An analytical solution for light scattering by metallic cylindrical nanoparticles with core-shell structure

机译:具有核壳结构的金属圆柱形纳米颗粒的光散射分析解决方案

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In this paper, the optical scattering from cylindrical plasmonic nanoparticles with a core-shell structure, while the core is dielectric coated by a metallic shell such as gold, is investigated by using an analytical solution in the framework of Mie theory. A closed-form (CF) formalism that determines the optical properties of cylindrical nanoparticles based on the series expansions of Bessel functions for the Mie scattering coefficients is introduced and presented. By using this formulation, we will show the optical response and the surface plasmon resonance of hybrid metal-based nanoparticles with cylindrical shape is dependent on the radius of nanoparticle, the refractive index of core and physical environment of nanoparticle. Also, the influence of interband transitions on the optical scattering by plasmonic nanoparticles is discussed and interpreted using the Drude-Lorentz model because the optical properties of metals arise from both the optical excitation of interband transitions and the free electron response.
机译:在本文中,通过在米氏理论框架下使用解析解研究了具有核-壳结构的圆柱形等离激元纳米粒子的光散射,同时核被金属如金的金属外壳覆盖。介绍并介绍了基于贝塞尔函数对Mie散射系数的级数展开来确定圆柱纳米粒子光学特性的封闭形式(CF)形式。通过使用此公式,我们将显示具有圆柱形形状的杂化金属基纳米颗粒的光学响应和表面等离子体共振取决于纳米颗粒的半径,核的折射率和纳米颗粒的物理环境。另外,由于金属的光学特性是由带间跃迁的光激发和自由电子响应共同产生的,因此使用Drude-Lorentz模型讨论并解释了带间跃迁对等离子体等离子体纳米粒子光散射的影响。

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