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Properties of resonant modal-plasmonic multiparametric biosensors

机译:共振模态-等离子体多参数生物传感器的特性

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We initiate a fundamental study of modal-plasmonic interactions in nanostructured resonance elements with the aim to develop new hybrid multiparametric sensors. The proposed hybrid sensor operates under guided-mode resonance (GMR) and surface-plasmon resonance (SPR) in unison. Numerical simulations of gold-integrated periodic resonant films show effective spectral conversions due to interplay between these mechanisms. In some cases, we find enhancements in sensitivity and attendant reduced resonance linewidths improving sensor resolution. Initial experimental results incorporating modal-plasmonic interactions in a resonant system containing a dielectric grating on a thin gold film agree qualitatively with theory. The research is important as the SPR and GMR concepts are independently the basis for commercial sensor systems with major economic impact.
机译:我们启动了对纳米结构共振元件中模态-等离子体相互作用的基础研究,旨在开发新型的混合多参数传感器。提出的混合传感器可同时在导模共振(GMR)和表面等离子体共振(SPR)下工作。由于这些机制之间的相互作用,金集成周期共振膜的数值模拟显示出有效的光谱转换。在某些情况下,我们发现灵敏度有所提高,并且谐振线宽随之降低,从而提高了传感器的分辨率。最初的实验结果将模态-等离子体相互作用纳入了共振系统,该共振系统在薄的金膜上包含电介质光栅,与理论相吻合。该研究非常重要,因为SPR和GMR概念独立地成为具有重大经济影响的商业传感器系统的基础。

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