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远场光学纳米显微镜术

Far-field optical nanoscopy.

作者信息

Hell Stefan W

机构信息

Department of NanoBiophotonics, Max Planck Institute for Biophysical Chemistry, 37070 Göttingen, and German Cancer Research Center (DKFZ), High Resolution Optical Microscopy Division, 69120 Heidelberg, Germany.

出版信息

Science. 2007 May 25;316(5828):1153-8. doi: 10.1126/science.1137395.

Abstract

In 1873, Ernst Abbe discovered what was to become a well-known paradigm: the inability of a lens-based optical microscope to discern details that are closer together than half of the wavelength of light. However, for its most popular imaging mode, fluorescence microscopy, the diffraction barrier is crumbling. Here, I discuss the physical concepts that have pushed fluorescence microscopy to the nanoscale, once the prerogative of electron and scanning probe microscopes. Initial applications indicate that emergent far-field optical nanoscopy will have a strong impact in the life sciences and in other areas benefiting from nanoscale visualization.

摘要

1873年,恩斯特·阿贝发现了一个后来广为人知的范例:基于透镜的光学显微镜无法分辨距离小于光波长一半的细节。然而,对于其最常用的成像模式——荧光显微镜来说,衍射屏障正在瓦解。在这里,我将讨论那些推动荧光显微镜进入纳米尺度的物理概念,而纳米尺度成像曾经是电子显微镜和扫描探针显微镜的专利。初步应用表明,新兴的远场光学纳米显微镜将对生命科学以及受益于纳米尺度可视化的其他领域产生重大影响。

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