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首页> 外文期刊>Proceedings >Metasurface-Based THz Dual-Band Absorber Sensor for the Measurement of Refractive Index Variations of Chemical and Biological Substances
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Metasurface-Based THz Dual-Band Absorber Sensor for the Measurement of Refractive Index Variations of Chemical and Biological Substances

机译:基于超表面的太赫兹双频吸收传感器,用于测量化学和生物物质的折射率变化

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摘要

In this paper we report on the results of the simulations of the electromagnetic properties of a metasurface composed of a 2D-array of plasmonic nanoantennas acting as polarisation insensitive dual band THz perfect absorber able to achieve absorption coefficients and quality factors up to 99.6% and 122, respectively. The 2D-array is designed on top of a polyimide flexible film separating it from an Ag ground layer. The plasmonic nanoantenna is composed of two Ag quadrangular rings and an Ag diamond-shape dot is placed at their geometrical centre. The absorption resonances show a linear frequency shift with respect to variations of the refractive index of transparent substances adsorbed on the metasurface. This allows the dual-band absorber to be employed as a sensor of the chemical/physical modifications taking place on the substance. In particular, in terms of the refractive index units, the sensor based on the dual-band absorber can achieve sensitivities up to 310 GHz/RIU.
机译:在本文中,我们报告了由等离子纳米天线的二维阵列作为极化不敏感双频太赫兹完美吸收体的超表面的电磁特性的模拟结果,该吸收体能够实现高达99.6%和122的吸收系数和品质因数, 分别。 2D阵列设计在聚酰亚胺柔性薄膜之上,该薄膜将其与Ag接地层隔开。等离子体纳米天线由两个Ag四边形环组成,一个Ag菱形点位于其几何中心。相对于吸附在超表面上的透明物质的折射率的变化,吸收共振表现出线性频率偏移。这允许双频带吸收器用作对该物质进行的化学/物理修饰的传感器。特别地,就折射率单位而言,基于双频带吸收器的传感器可以实现高达310 GHz / RIU的灵敏度。

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