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Fano resonance with high local field enhancement under azimuthally polarized excitation

机译:方位极化激发下具有高局部场增强的磁场共振

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摘要

Being an enabling technology for applications such as ultrasensitive biosensing and surface enhanced spectroscopy, enormous research interests have been focused on further boosting the local field enhancement at Fano resonance. Here, we demonstrate a plasmonic Fano resonance resulting from the interference between a narrow magnetic dipole mode and a broad electric dipole mode in a split-ring resonator (SRR) coupled to a nanoarc structure. Strikingly, when subjected to an azimuthally polarized beam (APB) excitation, the intensity enhancement becomes more than 60 times larger than that for a linearly polarized beam (LPB). We attribute this intensity enhancement to the improved conversion efficiency between the excitation and magnetic dipole mode along with improved near-field coupling. The APB excited Fano structure is further used as a nanoruler and beam misalignment sensor, due to the high sensitivity of intensity enhancement and scattering spectra to structure irregularities and excitation beam misalignment. Interestingly, we find that, regardless of the presence of structural translations, the proposed structure still maintains over 60 times better intensity enhancement under APB excitation compared to LPB excitation. Moreover, even if the APB excitation is somewhat misaligned, our Fano structure still manages to give a larger intensity enhancement than its counterpart excited by LPB.
机译:作为用于超灵敏生物传感和表面增强光谱学等应用的使能技术,巨大的研究兴趣集中在进一步促进Fano共振的局部场增强上。在这里,我们展示了由耦合到纳米弧结构的裂环谐振器(SRR)中的窄磁偶极子模式和宽电偶极子模式之间的干扰引起的等离子Fano谐振。令人惊讶的是,当受到方位偏振光束(APB)激发时,强度增强比线性偏振光束(LPB)增强60倍以上。我们将这种强度增强归因于激发和磁偶极子模式之间的改进转换效率以及改进的近场耦合。由于强度增强和散射光谱对结构不规则和激发光束未对准的高度敏感性,APB激发的Fano结构进一步用作纳米标尺和光束未对准传感器。有趣的是,我们发现,无论是否存在结构平移,与LPB激发相比,拟议的结构在APB激发下的强度增强仍然保持60倍以上。此外,即使APB激发在某种程度上未对准,我们的Fano结构仍然设法比LPB激发的强度增强。

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