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Manipulating and probing the growth of plasmonic nanoparticle arrays using ligh

机译:操作和探索电浆的发展纳米颗粒阵列使用上杉达也

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Highly ordered self-assembled silver nanoparticle (NP) arrays have been produced by glancing angle deposition on faceted c-plane Al2O3 templates. The NP shape can be tuned by changing the substrate temperature during deposition. Reflectance anisotropy spectroscopy has been used to monitor the plasmonic evolution of the sample during the growth. The structures showed a strong dichroic response related to NP anisotropy and dipolar coupling. Furthermore, multipolar resonances due to sharp edge effects between NP and substrate were observed. Analytical and numerical methods have been used to explain the results and extract semi-quantitative information on the morphology of the NPs. The results provide insights on the growth mechanisms by the glancing angle deposition. Finally, it has been shown that the NP morphology can be manipulated by a simple illumination of the surface with an intense light source, inducing changes in the optical response. This opens up new possibilities for engineering plasmonic structure over large active areas.
机译:高度有序的自组装银纳米颗粒(NP)阵列由掠射角在在上雕琢平面的c-plane沉积氧化铝模板。NP的形状可以通过改变来调谐在沉积衬底温度。反射各向异性光谱学已经使用监控样品的电浆进化在增长。二向色性与NP各向异性和响应偶极耦合。共振NP之间由于锋利的边缘效应和底物被观察到。数值方法被用来解释结果和提取半定量信息NPs的形态。看见解的增长机制角沉积。NP形态可以通过一个简单的操作强烈的光照明的表面源,诱导光学响应的变化。这对工程开辟了新的可能性电浆结构在大活跃的地区。

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