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Design study for transmission improvement of resonant surface plasmons using dielectric diffraction gratings

机译:使用介电衍射光栅改善共振表面等离子体激元透射的设计研究

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A transmission-type surface plasmon resonance configuration with dielectric gratings regularly patterned on a silver film was investigated with the aim of enhancing the diffraction efficiency of radiative surface plasmons. The theoretical work was conducted using rigorous coupled-wave analysis in terms of first order diffraction efficiency and conversion efficiency (CE). The results show that pyramid gratings can produce a higher transmittance compared with other grating profiles. Design optimization of the pyramid grating at a wide range of grating thicknesses and periods resulted in a maximum transmittance that was larger than 77percent and a peak CE of about 85percent. This study demonstrates the potential of using transmitted surface plasmon waves in various optical devices, such as optical biosensors, optical imaging systems, and polarization filters.
机译:为了提高辐射型表面等离子体激元的衍射效率,研究了具有在银膜上规则地构图的电介质光栅的透射型表面等离子体激元共振构型。在一级衍射效率和转换效率(CE)方面,使用严格的耦合波分析进行了理论工作。结果表明,与其他光栅轮廓相比,金字塔形光栅可以产生更高的透射率。在各种光栅厚度和周期范围内对金字塔光栅进行的设计优化导致最大透射率大于77%,峰值CE约为85%。这项研究证明了在各种光学设备(例如光学生物传感器,光学成像系统和偏振滤光片)中使用透射表面等离激元波的潜力。

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