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High-resolution scanning surface-plasmon microscopy

机译:高分辨率扫描表面等离子体显微镜

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Surface plasmons (SP's) are electromagnetic surface waves that propagate along the interface between conductors and dielectrics. The k vector of these waves is larger than the free-space wave vector. The importance of SP's lies in the fact that they are extremely sensitive to small changes in the dielectric properties of substances that are in contact with the conductors. This property means that SP's have many sensor applications; however, when they are used in microscopic applications the lateral resolution is limited to several micrometers. We discuss how this limit can be overcome by use of defocused high-numerical-aperture liquid-immersion objectives. We also present SP images that demonstrate a resolution comparable with that expected from high-numerical-aperture optical microscopes. Finally, we discuss how ultrahigh-numerical-aperture objectives with numerical apertures greater than 1.5 can be expected to have considerable influence on biological imaging.
机译:表面等离子体激元(SP)是沿导体和电介质之间的界面传播的电磁表面波。这些波的k向量大于自由空间波向量。 SP的重要性在于,它们对与导体接触的物质的介电特性的微小变化极为敏感。此属性意味着SP具有许多传感器应用程序。然而,当它们用于显微应用时,横向分辨率被限制在几微米。我们讨论了如何通过使用散焦的高数值孔径液体浸没物镜来克服此限制。我们还提供了SP图像,这些图像显示的分辨率可与高数值孔径光学显微镜所期望的分辨率相媲美。最后,我们讨论了如何可以预期数值孔径大于1.5的超高数值孔径物镜对生物成像有相当大的影响。

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