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Theoretical Simulation and Focused Ion Beam Fabrication of Gold Nanostructures For Surface-Enhanced Raman Scattering (SERS)

机译:用于表面增强拉曼散射(SERS)的金纳米结构的理论模拟和聚焦离子束制备

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摘要

This paper describes the fabrication of gold nanopillar and nanorod arrays and theoretical calculations of electromagnetic fields (EMFs) around ordered arrangements of these nanostructures. The EMFs of both single nanopillars and di-mers of nanopillars - having nanoscale gaps between the two adjacent nanopillars forming the di-mers - are simulated in this work by employing the Finite Difference Time Domain (FDTD) method. In the case of simulations for di-mers of nanopillars, the nano-scale gaps between the nanopillars are varied between 5 nm and 20 nm and calculations of the electromagnetic fields in the vicinity of the nanopillars and in the gaps between the nanopillars were carried out. Fabrication of gold nanopillars in a controlled manner for forming SERS substrates involves focused ion beam (FIB) milling. The nanostructures were fabricated on gold-coated silica, mica, and quartz planar substrates as well as on gold-coated tips of four mode and multimode silica optical fibers.
机译:本文介绍了金纳米柱和纳米棒阵列的制造以及围绕这些纳米结构的有序排列的电磁场(EMF)的理论计算。在这项工作中,使用有限时域(FDTD)方法模拟了单个纳米柱和纳米柱的二聚体的EMF(在形成二聚体的两个相邻纳米柱之间具有纳米级间隙)。在模拟纳米柱的二聚体的情况下,纳米柱之间的纳米级间隙在5 nm和20 nm之间变化,并对纳米柱附近和纳米柱之间的间隙中的电磁场进行了计算。 。以受控方式制造金纳米柱以形成SERS基板涉及聚焦离子束(FIB)铣削。纳米结构是在镀金的二氧化硅,云母和石英平面基板上以及在四模和多模二氧化硅光纤的镀金尖端上制造的。

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