Vallecchi Andrea, Albani Matteo, Capolino Filippo
Department of Information Engineering, University of Siena, Via Roma 56, 53100 Siena, Italy.
Opt Express. 2011 Jan 31;19(3):2754-72. doi: 10.1364/OE.19.002754.
We report an investigation on the optical properties of three-dimensional nanoclusters (NCs) made by spherical constellations of metallic nanospheres arranged around a central dielectric sphere, which can be realized and assembled by current state-of-the-art nanochemistry techniques. This type of NCs supports collective plasmon modes among which the most relevant are those associated with the induced electric and magnetic resonances. Combining a single dipole approximation for each nanoparticle and the multipole spherical-wave expansion of the scattered field, we achieve an effective characterization of the optical response of individual NCs in terms of their scattering, absorption, and extinction efficiencies. By this approximate model we analyze a few sample NCs identifying the electric and magnetic resonance frequencies and their dependence on the size and number of the constituent nanoparticles. Furthermore, we discuss the effective electric and magnetic polarizabilities of the NCs, and their isotropic properties. A homogenization method based on an extension of the Maxwell Garnett model to account for interaction effects due to higher order multipoles in dense packed arrays is applied to a distribution of NCs showing the possibility of obtaining metamaterials with very large, small, and negative values of permittivity and permeability, and even negative index.
我们报道了一项关于三维纳米团簇(NCs)光学性质的研究,该纳米团簇由围绕中心介电球体排列的金属纳米球的球形星座构成,可通过当前最先进的纳米化学技术实现和组装。这种类型的NCs支持集体等离子体模式,其中最相关的是与感应电共振和磁共振相关的模式。结合每个纳米粒子的单偶极近似和散射场的多极球面波展开,我们根据其散射、吸收和消光效率实现了对单个NCs光学响应的有效表征。通过这个近似模型,我们分析了一些样本NCs,确定了电共振和磁共振频率及其对组成纳米粒子大小和数量的依赖性。此外,我们讨论了NCs的有效电极化率和磁极化率及其各向同性性质。一种基于麦克斯韦 Garnett 模型扩展的均匀化方法,用于考虑密集堆积阵列中高阶多极相互作用效应,应用于NCs分布,显示出获得具有非常大、小和负值介电常数和磁导率甚至负折射率的超材料的可能性。