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Momentum-Resolved Surface Enhanced Raman Scattering from a Nanowire–Nanoparticle Junction Cavity

机译:从纳米线 - 纳米粒子结腔中散射动量分辨的表面增强拉曼散射

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Herein experimental evidence of directional surface enhanced Raman scattering from molecules situated inside a single nanowire-nanoparticle junction cavity is reported. The emission is confined to a narrow range of wavevectors perpendicular to the axis of the cavity. In addition to this, the molecules excite multiple guided modes of the nanowire which are imaged using leakage radiation Fourier microscopy. The emission wavevectors are further characterized as a function of output polarization. The excited guided modes of the wire show interesting polarization signatures. All the results are corroborated using finite element method based numerical simulations. Essentially, an important connection between gap-cavity enhanced Raman scattering and its directionality of emission is provided. The results may be of relevance in understanding the cavity electrodynamics at the nanoscale and molecular coupling to extremely small gaps between a 1D and a 0D plasmonic nanostructure.
机译:这里报道了本发明的定向表面增强拉曼从位于单个纳米线 - 纳米粒子结腔内的分子散射的实验证据。发射限制在垂直于腔轴的窄范围的波浪管范围内。除此之外,分子还会激发使用漏辐射傅里叶显微镜进行成像的纳米线的多种引导模式。发射波形的进一步表征为输出极化的函数。电线的激励导向模式显示有趣的偏振签名。所有结果都是使用基于有限元方法的数值模拟来证实。基本上,提供了间隙 - 腔增强拉曼散射的重要联系及其排放方向。结果在理解纳米级和分子耦合到1D和0D等离子体纳米结构之间的极小间隙中的腔电动电动和分子偶联的腔电动力学可能具有相关性。

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