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Geometric effects on far-field coupling between multipoles of nanoparticles in square arrays

机译:正方形阵列中纳米粒子多极间远场耦合的几何效应

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摘要

Metallic nanoparticles organized in regular arrays exhibit an extraordinary spectral feature that arises from electromagnetic coupling between localized surface plasmons and constructive interference from diffracted far-field radiation. A rapid semianalytical description of coupling between dipoles and scattering modes is applied to examine the influence of nanoparticle size, dielectric, and interparticle separation on the occurrence, resonant wavelength, and intensity of the extraordinary spectral feature. Introducing a dynamic polarizability that includes higher-order electric poles into the description accurately characterizes plasmon resonances of larger particles. Previously unrecognized patterns and periodic variations in the extraordinary feature were observed to result from modulations in polarizability, as well as from interference of scattered modes that were distinguishable for the first time using the rapid semianalytic solution. Streamlined rational design of metamaterials with optimum optical properties using the rapid semianalytic coupled dipole approximation is considered.
机译:以规则阵列组织的金属纳米颗粒表现出非凡的光谱特征,这是由于局部表面等离激元之间的电磁耦合和衍射远场辐射产生的建设性干扰而引起的。对偶极子和散射模式之间的耦合进行了快速的半分析描述,以检查纳米粒子尺寸,电介质和粒子间分离对异常光谱特征的出现,共振波长和强度的影响。在说明书中引入了包括高阶电极的动态极化率,可以准确地描述较大粒子的等离振子共振。先前观察到的异常模式中的无法识别的图案和周期性变化是由于极化率的调制以及使用快速半解析解决方案首次可分辨的散射模式的干扰引起的。考虑了使用快速半解析耦合偶极子近似方法对具有最佳光学性能的超材料进行合理的合理设计。

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