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Electromagnetic contribution to surface-enhanced Raman scattering from rough metal surfaces:A transformation optics approach

机译:电磁对粗糙金属表面的表面增强拉曼散射的贡献:一种转换光学方法

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摘要

The propagation of surface plasmons along rough metal surfaces is investigated with transformation optics. The roughness is modeled on a nanometer scale either by partly embedding a cylinder of metal into the surface (convex rough surface) or by excavating a cylindrical cavity from it (concave rough surface). These two structures can be treated analytically by means of conformal transformation. The interaction of surface plasmons with the singularities of these structures is shown to induce extreme field enhancements. These modes dominate the surface-enhanced Raman-scattering response and enhancement factors of the order of 10~7 are predicted. Interestingly, concave rough surfaces are shown to be the best candidates for surface-enhanced Raman scattering due to a stronger field enhancement and a lower sensitivity to the incident light polarization. Our analytical approach also points out the influence of the contact angle between the asperities and the metal surface on the bandwidth and the efficiency of the light-harvesting process.
机译:用转换光学研究了表面等离子体激元在粗糙金属表面上的传播。通过将一部分圆柱体嵌入表面(凸出的粗糙表面)或从中挖出圆柱形空腔(凹入的粗糙表面),可以在纳米尺度上模拟粗糙度。这两个结构可以通过保形变换进行分析处理。表面等离激元与这些结构的奇异性之间的相互作用显示出极大的场增强作用。这些模式主导了表面增强的拉曼散射响应,并预测了约10〜7的增强因子。有趣的是,由于更强的场增强和对入射光偏振的较低敏感性,凹面粗糙的表面被证明是表面增强拉曼散射的最佳选择。我们的分析方法还指出了凹凸不平与金属表面之间的接触角对带宽和光收集效率的影响。

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