Enhanced sensitivity of SPR sensing and imaging using plasmonic nanopillar arrays

Ajay kumar Agrawal, Abhijit Das, A. Dhawan
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引用次数: 3

Abstract

We present a 2-dimensional gold nanopillar array, consisting of narrow gaps between the nanopillars, for application in the area of biosensing. Normally incident light can couple directly into plasmonic waveguide modes in these 2-dimensional plasmonic nano-gratings formed by the 2-dimensional array of gold nanopillars. The effect of polarization of the incident light and of the dimensions of the nanopillars on the sensitivity of localized sensing was studied using Rigorous Coupled-Wave Analysis. The results show that the sensitivity of biosensors made from these nanopillar arrays is not polarization dependent. Moreover, varying the structural parameters of the nanopillar array can enable tuning of wavelengths at which biosensing can be carried out.
等离子体纳米柱阵列增强SPR传感和成像的灵敏度
我们提出了一种二维金纳米柱阵列,由纳米柱之间的窄间隙组成,用于生物传感领域。在这些由金纳米柱组成的二维等离子体纳米光栅中,正常入射光可以直接耦合到等离子体波导模式中。采用严格耦合波分析方法研究了入射光偏振和纳米柱尺寸对局部传感灵敏度的影响。结果表明,由这些纳米柱阵列制成的生物传感器的灵敏度不依赖于极化。此外,改变纳米柱阵列的结构参数可以调整波长,从而可以进行生物传感。
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