Tserkezis Christos, Herrmann Lars O, Valev Ventsislav K, Baumberg Jeremy J, Aizpurua Javier
Opt Express. 2014 Oct 6;22(20):23851-60. doi: 10.1364/OE.22.023851.
We present a detailed theoretical analysis of the optical response of threaded plasmonic nanoparticle strings, chains of metallic nanoparticles connected by cylindrical metallic bridges (threads), based on full-electrodynamic calculations. The extinction spectra of these complex metallic nanostructures are dominated by large resonances in the near infrared, which are associated with charge transfer along the entire string. By analysing contour plots of the electric field amplitude and phase we show that such strings can be interpreted as an intermediate situation between metallic nanoparticle chains and metallic nanorods, exhibiting characteristics of both. Modifying the dielectric environment, the number of nanoparticles within the strings, and the dimensions of the threads, allows for tuning the optical response of the strings within a very broad region in the visible and near infrared.
基于全电动力学计算,我们对螺纹状等离子体纳米颗粒串(由圆柱形金属桥(螺纹)连接的金属纳米颗粒链)的光学响应进行了详细的理论分析。这些复杂金属纳米结构的消光光谱在近红外区域以大共振为主,这与沿整个串的电荷转移有关。通过分析电场振幅和相位的等高线图,我们表明这种串可以被解释为金属纳米颗粒链和金属纳米棒之间的中间情况,兼具两者的特征。改变介电环境、串内纳米颗粒的数量以及螺纹的尺寸,可以在可见光和近红外的非常宽的区域内调节串的光学响应。