Simulation of localized surface plasmon in metallic nanoparticles embedded in amorphous silicon

A. Fantoni, M. Fernandes, Y. Vygranenko, P. Louro, M. Vieira, D. Texeira, A. Ribeiro, E. Alegria
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引用次数: 5

Abstract

We propose the development and realization of a plasmonic structure based on the LSP interaction of metal nanoparticles with an embedding matrix of amorphous silicon. This structure need to be usable as the basis for a sensor device applied in biomedical applications, after proper functionalization with selective antibodies. The final sensor structure needs to be low cost, compact and disposable. The study reported in this paper aims to analyze different materials for nanoparticles and embedding medium composition. Metals of interest for nanoparticles composition are Aluminum, Gold and Alumina. As a preliminary approach to this device, we study in this work the optical properties of metal nanoparticles embedded in an amorphous silicon matrix, as a function of size, aspect-ratio and metal type. Following an analysis based on the exact solution of the Mie theory, experimental measurements realized with arrays of metal nanoparticles are compared with the simulations.
嵌入非晶硅的金属纳米颗粒中局部表面等离子体的模拟
我们提出了一种基于金属纳米粒子与非晶硅嵌入基体的LSP相互作用的等离子体结构的开发和实现。经过选择性抗体的适当功能化后,该结构需要可用作生物医学应用中传感器设备的基础。最终的传感器结构需要低成本、紧凑和一次性。本研究旨在分析不同材料的纳米颗粒及其包埋介质组成。纳米颗粒组成感兴趣的金属是铝、金和氧化铝。作为该器件的初步方法,我们在这项工作中研究了嵌入在非晶硅基体中的金属纳米颗粒的光学性质,作为尺寸,宽高比和金属类型的函数。在基于Mie理论精确解的分析基础上,对金属纳米颗粒阵列的实验测量结果与模拟结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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