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Background Suppression in Near-field Optical Imaging

机译:近场光学成像中的背景抑制

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摘要

In several recent studies, antenna-based optical microscopy (e.g. TENOM) has demonstrated its potential to resolve features as small as 10nm. Most studies are concerned with well-separated features on flat surfaces and there are only few studies that deal with samples of high feature density or even three-dimesional objects. The reason is that the external laser irradiation of the optical antenna (e.g. tip or particle) also directly irradiates the sample and therefore gives rise to a background. Here we introduce an efficient background suppression scheme that makes use of feedback modulation. The method is widely applicable and not restricted to cantilever-based scanning schemes. We apply this technique to both dense samples of dye molecules and ion channel proteins in plasma membranes and demonstrate effective background suppression and strongly improved sensitivity. The feedback modulation scheme is expected to find application for biological studies in liquid environments and for investigations of subsurface features in material science.
机译:在最近的几项研究中,基于天线的光学显微镜(例如TENOM)证明了其解决小至10nm特征的潜力。大多数研究都关注平坦表面上的分离良好的特征,只有很少的研究涉及高特征密度甚至是3维物体的样本。原因是光学天线(例如尖端或颗粒)的外部激光辐照也直接辐照样品,因此产生背景。在这里,我们介绍一种利用反馈调制的有效背景抑制方案。该方法广泛适用,并且不限于基于悬臂的扫描方案。我们将这种技术应用于染料分子和质膜中离子通道蛋白的致密样品,并证明了有效的背景抑制和大大提高的灵敏度。预计反馈调制方案将在液体环境中的生物学研究和材料科学中的地下特征研究中找到应用。

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