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Effect of prism material on design of surface plasmon resonance sensor by admittance loci method

机译:导纳位点法对棱镜材料对表面等离子体共振传感器设计的影响

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摘要

A theoretical study on the design of surface plasmon resonance (SPR) based sensor by admittance loci method has been reported in this paper with the main emphasis being given to the effect of the prism material in a conventional Kretschmann structure in attenuated total internal reflection (ATIR) mode. Several sensing media such as water, acetone, methanol etc have been investigated using different types of prism materials to study their effect on SPR sensing and validated by corresponding admittance loci plots as well as respective SPR curves. The performance of the sensor based on choice of the prism material has been discussed with the help of sensitivity plots giving due to the importance of dynamic range of the designed sensor. Simulations have been carried out in MATLAB 7.1 environment.
机译:本文报道了通过导纳位点法设计基于表面等离振子共振(SPR)的传感器的理论研究,主要重点在于棱镜材料在传统Kretschmann结构中对衰减全内反射(ATIR)的影响。 )模式。已经使用不同类型的棱镜材料研究了几种感测介质,例如水,丙酮,甲醇等,以研究它们对SPR感测的影响,并通过相应的导纳位点图和各自的SPR曲线进行了验证。由于所设计的传感器的动态范围的重要性,借助灵敏度图对基于棱镜材料选择的传感器性能进行了讨论。在MATLAB 7.1环境中进行了仿真。

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