Department of Physics and Advanced Materials and Institute of Nanoscale Technology, University of Technology, Sydney, PO Box 123, Broadway NSW 2007, Australia.
Nanotechnology. 2010 Jan 8;21(1):015203. doi: 10.1088/0957-4484/21/1/015203. Epub 2009 Nov 30.
Anomalous strong resonances in silver and gold nanoporous thin films which conduct are found to arise from isolated metal nano-islands separated from the surrounding percolating metal network by a thin loop of insulator. This observed resonant optical response is modelled. The observed peak position is in agreement with the observed average dimensions of the silver core and insulator shell. As the insulating ring thickness shrinks, the resonance moves to longer wavelengths and strengthens. This structure is the Babinet's principle counterpart of dielectric core-metal shell nanoparticles embedded in dielectric. Like for the latter, tuning of resonant absorption is possible, but here the matrix reflects rather than transmits, and tuning to longer wavelengths is more practical. A new class of metal mirror occurring as a single thin layer is identified using the same resonances in dense metal mirrors. Narrow band deep localized dips in reflectance result.
在导电的银和金纳米多孔薄膜中发现了异常强的共振,这些共振源于孤立的金属纳米岛,这些纳米岛通过薄的绝缘环与周围的渗透金属网络隔开。对观察到的共振光响应进行了建模。观察到的峰值位置与观察到的银核和绝缘壳的平均尺寸一致。随着绝缘环厚度的缩小,共振移向更长的波长并增强。这种结构是介电核-金属壳纳米粒子嵌入介电材料中的 Babinet 原理对应物。与后者一样,共振吸收的调谐是可能的,但在这里,矩阵反射而不是传输,并且调谐到更长的波长更实用。使用密集金属镜中的相同共振,确定了一种作为单层出现的新型金属镜。反射率出现窄带深局部凹陷。