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Immersed transparent microsphere magnifying sub-diffraction-limited objects

机译:沉浸的透明微球体放大了亚衍射极限物体

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摘要

The resolution of an optical microscope is restricted by the diffraction limit, which is approximately 200 nm for a white light source. We report that sub-diffraction-limited objects can be resolved in immersion liquids using a microsphere optical nanoscopy (MONS) technique. Image magnifications and resolutions were obtained experimentally and compared in different immersion liquids. We show that a 100 μm diameter barium titanate (BaTiO_3) glass microsphere combined with a standard optical microscope can image sub-diffraction-limited objects with halogen light in three different media: water, 40% sugar solution, and microscope immersion oil. In this paper, the super-resolution imaging performance has been described with the three immersion liquid types and the mechanisms are discussed with Mie theory calculation in the field of a Poynting vector.
机译:光学显微镜的分辨率受到衍射极限的限制,对于白光源,衍射极限约为200 nm。我们报告,可以使用微球光学纳米技术(MONS)技术在浸没液体中解决亚衍射极限物体。通过实验获得图像放大率和分辨率,并在不同的浸没液体中进行比较。我们显示,直径为100μm的钛酸钡(BaTiO_3)玻璃微球与标准光学显微镜相结合,可以在三种不同的介质(水,40%的糖溶液和显微镜浸入的油)中用卤素灯成像限制亚衍射的物体。本文介绍了三种浸没液体类型的超分辨率成像性能,并通过Mie理论计算讨论了Poynting矢量领域的机理。

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