Rahmani M, Lukiyanchuk B, Ng B, Tavakkoli K G A, Liew Y F, Hong M H
Data Storage Institute, (A*STAR) Agency for Science Technology and Research, 5 Engineering Drive 1, 117608 Singapore.
Opt Express. 2011 Mar 14;19(6):4949-56. doi: 10.1364/OE.19.004949.
Arrays of plasmonic pentamers consisting of five metallic nano-disks were designed and fabricated to achieve a pronounced Fano Resonance with polarization-independent far-field spectral response at normal incidence due to the structure symmetry of pentamers. A mass-spring coupled oscillator model was applied to study plasmon interactions among the nano-disks. It was found that the direction of the excitation light polarization can flexibly tune the spatial localization of near-field energy at sub-wavelength scales while the collective optical properties are kept constant. It can lead to a selective storage of excited energy down to sub-20 nm gap at a normal incident with a single light source.
设计并制造了由五个金属纳米盘组成的等离子体五聚体阵列,由于五聚体的结构对称性,在正入射时实现了具有与偏振无关的远场光谱响应的显著法诺共振。应用质量-弹簧耦合振荡器模型来研究纳米盘之间的等离子体相互作用。研究发现,激发光偏振方向可以在保持集体光学性质不变的情况下,在亚波长尺度上灵活调节近场能量的空间定位。这可以导致在单个光源正入射时,将激发能量选择性地存储到亚20纳米的间隙中。