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Demonstration of a Hyperlens-integrated Microscope and Super-resolution Imaging

机译:超透镜集成显微镜的演示和超分辨率成像

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摘要

The use of super-resolution imaging to overcome the diffraction limit of conventional microscopy has attracted the interest of researchers in biology and nanotechnology. Although near-field scanning microscopy and superlenses have improved the resolution in the near-field region, far-field imaging in real-time remains a significant challenge. Recently, the hyperlens, which magnifies and converts evanescent waves into propagating waves, has emerged as a novel approach to far-field imaging. Here, we report the fabrication of a spherical hyperlens composed of alternating silver (Ag) and titanium oxide (TiO2) thin layers. Unlike a conventional cylindrical hyperlens, the spherical hyperlens allows for two-dimensional magnification. Thus, incorporation into conventional microscopy is straightforward. A new optical system integrated with the hyperlens is proposed, allowing for a sub-wavelength image to be obtained in the far-field region in real time. In this study, the fabrication and imaging setup methods are explained in detail. This work also describes the accessibility and possibility of the hyperlens, as well as practical applications of real-time imaging in living cells, which can lead to a revolution in biology and nanotechnology.
机译:使用超分辨率成像技术克服常规显微镜的衍射极限已引起生物学和纳米技术研究人员的兴趣。尽管近场扫描显微镜和超透镜提高了近场区域的分辨率,但实时远场成像仍然是一项重大挑战。近来,将远逝波放大并将其转换为传播波的超透镜已经成为一种用于远场成像的新颖方法。在这里,我们报告了由交替的银(Ag)和二氧化钛(TiO2)薄层组成的球形超透镜的制造。不同于常规的圆柱形超透镜,球形超透镜允许二维放大。因此,结合到常规显微镜中是直接的。提出了一种与超透镜集成的新光学系统,可以在远场区域实时获取亚波长图像。在这项研究中,详细说明了制造和成像设置方法。这项工作还描述了超透镜的可及性和可能性,以及活细胞中实时成像的实际应用,这可能导致生物学和纳米技术的革命。

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