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A Potential Plasmonic Biosensor Based Asymmetric Metal Ring Cavity with Extremely Narrow Linewidth and High Sensitivity

机译:基于潜在的等离子体化生物传感器的不对称金属环腔具有极窄的线宽和高灵敏度

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摘要

To achieve high sensitivity and multi-mode sensing characteristics based on the plasmon effect, we explored a high-sensitivity refractive index sensor structure with narrow linewidth and high absorption characteristics based on theoretical analysis. The sensor structure is composed of periodic asymmetric ring cavity array, spacer layer and metal thin-film layer. The reflection spectrum of this structure shows six resonance modes in the wavelength range from visible to near-infrared. The sensor performance was optimized based on the change of the sensor structure parameters combining the simulation data, and the results shown that this kind of asymmetric laminated structure sensor has good sensing performance. In theory, it can be combined with microfluidic technology to achieve sensing detection of diverse test samples, multi-mode and multi-component, which has great potential in the field of biosensing.
机译:为实现基于等离子体效应的高灵敏度和多模式感测特性,我们探讨了具有窄线宽和基于理论分析的窄线宽和高吸收特性的高灵敏度折射率传感器结构。传感器结构由周期性不对称环腔阵列,间隔层和金属薄膜层组成。该结构的反射谱在波长范围内显示出六个谐振模式,从可见到近红外线。基于组合模拟数据的传感器结构参数的变化优化了传感器性能,结果表明这种非对称层压结构传感器具有良好的感测性能。理论上,它可以与微流体技术相结合,以实现不同测试样品,多模和多组分的传感检测,这在生物传感器领域具有很大的潜力。

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