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Controlling the optical properties of gold nanoparticles periodic arrays by changing their topologic shapes and substrate properties

机译:通过改变其拓扑形状和基材性能来控制金纳米颗粒的光学性质

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We investigated the influence of extinction of gold nanoparticles periodic arrays by varying the substrate properties and the shapes of nanoparticles with the full vectorial three dimensional finite difference time domain method. Substrates of different thicknesses and dielectric constants and ten topologically different gold nanostructures including diamond, cycle ring, rectangle ring, pentagon ring, five-pointed star, flower shape, L, Y, T and X shapes are considered. The results show that substrate properties have a significant impact on the extinction spectrum due to coupling of the modes excited in substrates and the one excited by localized surface plasmon. The extinction spectra are changed with the different shapes of nanoparticles periodic array. However, with similar structure particles periodic arrays, the extinction spectra appear similar in the visible regime. Therefore we can find an eligible shape and substrate which can be used in integrated devises.
机译:我们通过全横向横向性有限差差时域法改变底座性质和纳米颗粒的形状来研究金纳米颗粒的灭绝的影响。考虑了不同厚度和介电常数的衬底和十个拓扑不同的金纳布结构,包括金刚石,循环环,矩形环,五角形环,五点星,花形,L,Y,T和X形状。结果表明,由于在基板中激发的模式的偶联和由局部表面等离子体激发的耦合,基材特性对消光谱具有显着影响。消光光谱随着纳米颗粒周期性阵列的不同形状而改变。然而,对于类似的结构粒子周期性阵列,消光光谱在可见制度中看起来类似。因此,我们可以找到可用于集成设计的符合条件的形状和基板。

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