首页> 外文会议>CODEC 2012;International Conference on Computers and Devices for Communication >Influence of Chalcogenide Glass on Surface Plasmon Resonance based Sensor Design in Near Infrared Region using Admittance Loci Method
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Influence of Chalcogenide Glass on Surface Plasmon Resonance based Sensor Design in Near Infrared Region using Admittance Loci Method

机译:硫属化物玻璃对近红外区域表面等离子体共振基于传感器设计的影响使用进入基因座法

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A numerical simulation study based on the use of admittance loci method in design of surface plasmon resonance (SPR) based sensor using chalcogenide and other commonly used glasses has been reported in this paper. A simple Kretschmann-Raether prism-based multilayer structure consisting of a glass prism, Gold (Au) metal film and water (sensing layer) has been investigated with the use of admittance loci method in Attenuated Total Internal Reflection (ATIR) mode. Infrared transmission properties of chalcogenide material along with high refractive index offer certain advantages for sensing applications. Admittance loci plots as well as resonance curves using chalcogenide glass has been compared with those for other commonly used glasses in order to study their effect on SPR sensing in near infrared (NIR) wavelength region.
机译:本文报道了基于表面等离子体共振(SPR)基于表面等离子体共振(SPR)传感器的进入基因座方法的数值模拟研究。本文据报道。 通过在减毒的全内反射(ATIR)模式中,已经研究了由玻璃棱镜,金(Au)金属膜和水(传感层)组成的简单的Kretschmann- raether棱镜的多层结构。 硫属化物材料的红外传输性能以及高折射率为传感应用提供了某些优点。 与其他常用玻璃的那些相比,进入基因座和使用硫属化物玻璃的共振曲线曲线图,以研究其对近红外(NIR)波长区域的SPR感应的影响。

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