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High NA particle- and tip-enhanced nanoscale Raman spectroscopy with a parabolic-mirror microscope

机译:高抛物面镜显微镜的高NA颗粒和尖端增强的纳米拉曼光谱

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Detecting efficiently the plasmon-enhanced Raman signal of molecules created in the nanometre-sized gap between a metal nanoparticle or the apex of a sharp tip and a metal surface is the key problem in particle- or tip-enhanced local surface spectroscopy (Pettinger et al., 2004; Roth et al., 2006). The optical excitation field has to be polarized along the gap, and the field emerging from the gap has to be observed from the side. These geometrical restrictions usually limit the numerical aperture of the lens used for exciting the gap and collecting the scattered photons created in the gap. We present a novel method to overcome this problem. The solution is based on a confocal optical microscope with a high numerical aperture parabolic mirror for excitation and detection. Localized plasmons can be efficiently excited parallel to the surface normal by illuminating the parabolic mirror with a radially polarized doughnut mode and the field emerging sidewise from the gap can be efficiently collected by the rim of the parabolic mirror and directed to the detection system. First results on particle- and tip-enhanced Raman spectroscopic measurements of benzotriazole molecules adsorbed on gold films are presented.
机译:高效检测在金属纳米粒子或尖锐尖端的顶点与金属表面之间的纳米级间隙中产生的分子的等离子体增强拉曼信号是粒子或尖端增强局部表面光谱学中的关键问题(Pettinger等,2004; Roth等,2006)。光激发场必须沿间隙偏振,并且必须从侧面观察从间隙出来的场。这些几何限制通常会限制用于激发间隙并收集间隙中产生的散射光子的透镜的数值孔径。我们提出一种新颖的方法来克服这个问题。该解决方案基于具有高数值孔径抛物面镜的共焦光学显微镜,用于激发和检测。通过以径向偏振的甜甜圈模式照射抛物面反射镜,可以有效地激发平行于表面法线的等离激元,并且从抛物面反射镜的边缘可以有效地收集从间隙向侧面出现的场,并将其导向检测系统。给出了吸附在金膜上的苯并三唑分子的颗粒增强和尖端拉曼光谱测量的初步结果。

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