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Study of resonant processes in plasmonic metasurfaces for SPR sensing

机译:用于等离子共振传感的等离子超表面的共振过程研究

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We investigate selected periodic arrays of nanostructures inspired by metasurfaces and evaluate their potential for surface plasmon resonance (SPR) effect used in sensor applications. Building blocks with various shapes were arranged on suitable substrates and their reflection, transmission, and loss energy spectra were calculated. The numerical studies were performed using our proprietary in-house efficient two-dimensional rigorous coupled-wave analysis technique. Using the calculated spectra, we investigated spectral sensitivities of SPR and calculated the respective SPR sensor characteristics, such as figures of merit (FOM), enabling direct comparison of various structural morphologies for potential sensing applications. Comparing various metasurface structures in terms of FOM has allowed identification of the promising candidates.
机译:我们研究了受超表面启发的纳米结构的选定周期性阵列,并评估了其在传感器应用中使用的表面等离振子共振(SPR)效应的潜力。将具有各种形状的构造块布置在合适的基板上,并计算它们的反射,透射和损耗能谱。数值研究是使用我们专有的内部高效二维严格耦合波分析技术进行的。使用计算得出的光谱,我们研究了SPR的光谱敏感性,并计算了各自的SPR传感器特性,例如品质因数(FOM),从而可以对潜在传感应用中的各种结构形态进行直接比较。在FOM方面比较各种不同的超表面结构可以确定有前途的候选物。

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