首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Three-dimensional nanofocusing of light through surface plasmon scattering by a lump-like defect in metal/dielectric/metal slot waveguides
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Three-dimensional nanofocusing of light through surface plasmon scattering by a lump-like defect in metal/dielectric/metal slot waveguides

机译:通过金属/电介质/金属缝隙波导中的块状缺陷通过表面等离子体激元散射对光进行三维纳米聚焦

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摘要

We show that scattering of a surface plasmon by lump-like defects on the walls of a metal/dielectric/metal slot waveguide may be accompanied by 3D nanofocusing of light. Such nanofocusing results in the emergence of "hot spots" of nanometer size with a field intensity several orders higher than in the incident plasmon. This effect takes place only if the lump size is smaller than some critical value. We also demonstrate that a so-called plasmonic "black hole" can concentrate electromagnetic energy as well. We believe that the effect of plasmon nanofocusing may be used for plasmonic nanosensing or subwavelength microscopy.
机译:我们表明,金属/电介质/金属缝隙波导壁上的块状缺陷对表面等离子体激元的散射可能伴随着光的3D纳米聚焦。这种纳米聚焦导致出现具有与入射等离子体激元相比高几个数量级的场强的纳米尺寸的“热点”。仅当块大小小于某个临界值时,才会发生这种效果。我们还证明了所谓的等离子体“黑洞”也可以集中电磁能。我们相信等离激元纳米聚焦的效果可用于等离激元纳米传感或亚波长显微镜。

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