Niesen Bjoern, Rand Barry P, Van Dorpe Pol, Shen Honghui, Maes Bjorn, Genoe Jan, Heremans Paul
imec vzw, Kapeldreef 75, B-3001 Leuven, Belgium.
Opt Express. 2010 Aug 30;18(18):19032-8. doi: 10.1364/OE.18.019032.
We observe the appearance of multiple dipole surface plasmon resonances in spherical Ag nanoparticles when embedded in an organic semiconductor that exhibits a highly dispersive permittivity. Comparing the absorption spectra of thin-films with and without Ag nanoparticles reveals the presence of two plasmon peaks. Numerical simulations and calculations based on an electrostatic model allow us to attribute both peaks to dipole resonances, and show that the strong dispersion of the organic permittivity is responsible for this behavior. The presence of these two plasmon resonances was found to enhance the absorption of the organic semiconductor over a broad wavelength range.
当嵌入具有高度色散介电常数的有机半导体中时,我们观察到球形银纳米颗粒中出现多个偶极表面等离子体共振。比较有无银纳米颗粒的薄膜的吸收光谱,发现存在两个等离子体峰。基于静电模型的数值模拟和计算使我们能够将这两个峰都归因于偶极共振,并表明有机介电常数的强色散是这种现象的原因。发现这两个等离子体共振的存在增强了有机半导体在很宽波长范围内的吸收。