Ye Jian, Lagae Liesbet, Maes Guido, Borghs Gustaaf, Van Dorpe Pol
IMEC, Kapeldreef 75, B-3001, Leuven, Belgium.
Opt Express. 2009 Dec 21;17(26):23765-71. doi: 10.1364/OE.17.023765.
We use the finite difference time domain method to predict how optical plasmon properties are modified if the symmetrical geometry of gold shell nanostructures is broken. The simulations include three kinds of gold open shell nanostructures of nanobowls, open nanocages, and open eggshells. For all structures, the optical extinction spectra commonly display a distinct red shift when the full shell geometry is broken and a hyperbola-like dipolar plasmonic shift when the fractional height continuously decreases. The optical transitions of gold open shell nanostructures are explained by the plasmon hybridization theory combined with numerical calculations. Furthermore, the calculations exhibit that the local electric fields are strongly enhanced at the edges of the open nanoapertures on those symmetry-broken structures, which suggests a potential application in surface-enhanced Raman spectroscopy.
我们使用时域有限差分法来预测,如果金壳纳米结构的对称几何形状被破坏,其光学等离子体激元特性将如何改变。模拟包括纳米碗、开放纳米笼和开放蛋壳这三种金开放壳纳米结构。对于所有结构,当完整壳几何形状被破坏时,光学消光光谱通常会出现明显的红移,而当分数高度连续降低时,会出现类似双曲线的偶极等离子体激元频移。金开放壳纳米结构的光学跃迁通过等离子体激元杂化理论结合数值计算来解释。此外,计算结果表明,在那些对称破坏结构上的开放纳米孔径边缘,局部电场会强烈增强,这表明其在表面增强拉曼光谱中有潜在应用。