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Analysis of metallic nanoparticles embedded in thin film semiconductors for optoelectronic applications

机译:分析用于光电应用的薄膜半导体中嵌入的金属纳米颗粒

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摘要

This paper reports about a study of the local plasmonic resonance (LSPR) produced by metal nanoparticles embedded in a dielectric or semiconductor matrix. It is presented an analysis of the LSPR for different nanoparticle metals, shapes, and embedding media composition. Metals of interest for nanoparticle composition are Aluminum and Gold. Shapes of interest are nanospheres and nanotriangles. We study in this work the optical properties of metal nanoparticles diluted in water or embedded in amorphous silicon, ITO and ZnO as a function of size, aspect-ratio and metal type. Following the analysis based on the exact solution of the Mie theory and DDSCAT numerical simulations, it is presented a comparison with experimental measurements realized with arrays of metal nanospheres. Simulations are also compared with the LSPR produced by gold nanotriangles (Au NTs) that were chemically produced and characterized by microscope and optical measurements.
机译:本文报道了对嵌入在电介质或半导体基质中的金属纳米粒子产生的局部等离子体共振(LSPR)的研究。提出了对不同纳米颗粒金属,形状和包埋介质成分的LSPR的分析。纳米颗粒组合物感兴趣的金属是铝和金。感兴趣的形状是纳米球和纳米三角形。我们在这项工作中研究了用水稀释或嵌入无定形硅,ITO和ZnO中的金属纳米粒子的光学性质,该光学性质是尺寸,长宽比和金属类型的函数。在基于Mie理论的精确解和DDSCAT数值模拟进行分析之后,提出了与金属纳米球阵列实现的实验测量结果的比较。还将模拟结果与金纳米三角形(Au NT)产生的LSPR进行了比较,金纳米三角形是通过化学方法生产的,并通过显微镜和光学测量进行了表征。

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