Department of Physics and Astronomy, Rice University, 6100 Main Street, Houston, Texas 77005, USA.
ACS Nano. 2011 Sep 27;5(9):7254-62. doi: 10.1021/nn202086u. Epub 2011 Jul 25.
As optical frequency nanoantennas, reduced-symmetry plasmonic nanoparticles have light-scattering properties that depend strongly on geometry, orientation, and variations in dielectric environment. Here we investigate how these factors influence the spectral and angular dependence of light scattered by Au nanocups. A simple dielectric substrate causes the axial, electric dipole mode of the nanocup to deviate substantially from its characteristic cos(2) θ free space scattering profile, while the transverse, magnetic dipole mode remains remarkably insensitive to the presence of the substrate. Nanoscale irregularities of the nanocup rim and the local substrate permittivity have a surprisingly large effect on the spectral- and angle-dependent light-scattering properties of these structures.
作为光学频率纳米天线,具有低对称性的等离子体纳米粒子具有强烈依赖于几何形状、取向和介电环境变化的光散射特性。在这里,我们研究了这些因素如何影响 Au 纳米杯散射的光的光谱和角度依赖性。简单的介电衬底会导致纳米杯的轴向、电偶极子模式明显偏离其特征的 cos(2)θ 自由空间散射分布,而横向、磁偶极子模式对衬底的存在仍然非常不敏感。纳米杯边缘的纳米级不规则性和局部衬底介电常数对这些结构的光谱和角度相关光散射特性有很大的影响。