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Modelling of Nanoantenna-Based Optical Sensors for High-Sensitivity High-Resolution Infrared Spectroscopy of Chemical Compounds

机译:化合物的高灵敏度,高分辨率红外光谱的基于纳米天线的光学传感器的建模

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In this paper we investigate how to increase the functionalities of optical sensors based on metal nanoantennas (NA) arranged in 2D-arrays as sensitive spectroscopic tools for the identification of molecular species by using the Surface Enhanced InfraRed Absorption (SEIRA) technique. We will discuss the influence of the NA geometrical parameters (length, width and thickness) and 2D-array periodicity on the local electric field enhancement and 2D-array spectral response. Software based on the finite element method (FEM) is used to accurately simulate the NA 2D-array reflectivity response as a function of the wavelength of the probing light. In particular, by evaluating the optical response of rod and cross NA 2D-arrays we studied the influence of the NA geometrical parameters on the SEIRA response.
机译:在本文中,我们研究如何通过使用表面增强红外吸收(SEIRA)技术来增加基于二维阵列中排列的金属纳米天线(NA)的光学传感器的功能,作为灵敏的光谱学工具来识别分子种类。我们将讨论NA几何参数(长度,宽度和厚度)和2D阵列周期性对局部电场增强和2D阵列光谱响应的影响。使用基于有限元方法(FEM)的软件来精确模拟NA 2D阵列反射率响应与探测光波长的关系。特别是,通过评估棒形和交叉NA 2D阵列的光学响应,我们研究了NA几何参数对SEIRA响应的影响。

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