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Wide-field, surface-sensitive four-wave mixing microscopy of nanostructures

机译:纳米结构的广域,表面敏感的四波混合显微镜

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摘要

We describe a wide-field four-wave mixing (FWM) microscope with imaging characteristics optimized for examining nanostructures. The microscope employs surface-plasmon polariton (SPP) excitation in a gold film to achieve surface-sensitive imaging conditions. The SPP surface fields boost the FWM efficiency by 2 orders of magnitude relative to the excitation efficiency of the evanescent fields at a bare glass surface. We demonstrate two excitation geometries that completely suppress the electronic FWM response of the metal film while allowing the far-field detection of FWM radiation from nanostructures at the interface. We obtained wide-field FWM images from individual carbon nanotubes and nanoclusters of neocyanine molecules at image acquisition times of 1 s, demonstrating the potential for background free, surface-enhanced FWM imaging of nanomaterials.
机译:我们描述了具有优化用于检查纳米结构的成像特性的宽视野四波混合(FWM)显微镜。显微镜在金膜中采用表面等离子体激元(SPP)激发,以实现表面敏感的成像条件。相对于在裸露玻璃表面处的boost逝场的激发效率,SPP表面场将FWM效率提高了2个数量级。我们演示了两种激发几何结构,它们完全抑制了金属膜的电子FWM响应,同时允许从界面处的纳米结构对FWM辐射进行远场检测。我们在1 s的图像获取时间从新的花青素分子的单个碳纳米管和纳米簇获得了宽视野FWM图像,证明了纳米材料无背景,表面增强的FWM成像的潜力。

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