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Optical microscopy with super-resolution by liquid-immersed highindex microspheres

机译:液浸高折射率微球具有超高分辨率的光学显微镜

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We study super-resolution capability of liquid-immersed high refractive index (n~1.9-2.1) barium titanate glass microspheres with diameters from several microns up to hundreds of microns. Imaging is provided in a conventional upright microscope with the spheres placed in a contact position with various semiconductor and metallic nanostructures. Using a commercial Blu-ray disk, we demonstrate an ability to discern 100 run feature sizes which cannot be resolved by conventional microscopy. Using silver nanowires with diameter about 100 nm, we demonstrate ~1.7 times improvement in spatial resolution compared to conventional diffraction-limited far field microscopy. Using two-dimensional nanoplasmonic arrays, we demonstrate high resolution imaging by using objectives with surprisingly small numerical apertures. The last property is attractive for high-resolution imaging at long working distances. This imaging technique can be used in biomedical microscopy, microfluidics, and nanophotonics applications.
机译:我们研究了直径从几微米到几百微米的液浸高折射率(n〜1.9-2.1)钛酸钡玻璃微球的超分辨能力。在传统的立式显微镜中提供成像,将球放置在与各种半导体和金属纳米结构接触的位置。使用商业蓝光光盘,我们展示了辨别常规显微镜无法解决的100个运行特征大小的能力。使用直径约100 nm的银纳米线,与传统的衍射受限远场显微镜相比,我们证明了空间分辨率提高了约1.7倍。使用二维纳米等离子体阵列,我们通过使用具有令人惊讶的小数值孔径的物镜演示了高分辨率成像。最后一个特性对于长距离的高分辨率成像很有吸引力。该成像技术可用于生物医学显微镜,微流控技术和纳米光子学应用。

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