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Plasmonic Particle-on-Film Nanocavity in Tightly Focused Vector Beam: a Full-Wave Theoretical Analysis from Near-Field Enhancement to Far-Field Radiation

机译:紧密聚焦矢量梁中的等离子体粒子上膜纳米凹陷:近场增强到远场辐射的全波理论分析

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Based on the local electric field enhancement of gap-mode surface plasmon resonance, the plasmonic particle-on-film nanocavity (PPoFN) can realize Raman signal enhancement of multiple orders of magnitude, even single molecule detection. The tightly focused radially polarized (Bessel-Gaussian) beam (TFRPB), containing a cylindrical symmetry longitudinal component, is a superior excitation source for PPoFN to generate a more intriguing electromagnetic hot spot in the gap. For the optical response of PPoFN in TFRPB, some theoretical and experimental studies at a certain wavelength have been reported, but a full-wave analysis about the near- and far-field optical properties is still lacking because it is still difficult to generate a full-wave radially polarized beam and achieve a dispersion-free confocal light field in the experiment. In this paper, we analyze the full-wave near- and far-field optical properties of PPoFN in TFRPB by using numerical simulation with the finite element method (FEM). For comparison, a full-wave analysis of PPoFN in tightly focused linearly polarized (Gaussian) beam (TFLPB) is also implemented. Based on the comprehensive results of local field enhancement, nanofocusing property, and far-field radiation, it is found that the PPoFN in TFRPB with the strongest toroidal dipole (TD) mode at a certain wavelength can achieve good performance in Raman signal excitation and detection. Importantly, this result will provide a theoretical reference for the application of PPoFN in tightly focused vector beam.
机译:基于间隙模表面等离子体共振的局部电场增强,膜上等离子体粒子纳米腔(PPoFN)可以实现多个数量级的拉曼信号增强,甚至单分子检测。紧密聚焦的径向偏振(贝塞尔-高斯)光束(TFRPB)包含圆柱对称的纵向分量,是PPoFN产生更有趣的电磁热点的优良激发源。对于TFRPB中PPoFN的光学响应,已经报道了一些特定波长下的理论和实验研究,但由于在实验中仍然难以产生全波径向偏振光并实现无色散共焦光场,因此仍然缺乏关于近场和远场光学特性的全波分析。本文采用有限元数值模拟方法,分析了TFRPB中PPoFN的全波近场和远场光学特性。为了进行比较,还对紧聚焦线偏振(高斯)光束(TFLPB)中的PPoFN进行了全波分析。基于局域场增强、纳米聚焦特性和远场辐射的综合结果,发现在一定波长下具有最强环形偶极子(TD)模式的TFRPB中的PPoFN可以在拉曼信号激发和检测中获得良好的性能。重要的是,这一结果将为PPoFN在紧聚焦矢量光束中的应用提供理论参考。

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