首页> 外文期刊>Applied Physics A: Materials Science & Processing >Tuning the polarization states of optical spots at the nanoscale on the Poincaré sphere using a plasmonic nanoantenna
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Tuning the polarization states of optical spots at the nanoscale on the Poincaré sphere using a plasmonic nanoantenna

机译:使用等离子纳米天线调谐庞加莱球上纳米级光斑的偏振态

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摘要

It is shown that the polarization states of optical spots at the nanoscale can be manipulated to various points on the Poincaré sphere using a plasmonic nanoantenna. Linearly, circularly, and elliptically polarized near-field optical spots at the nanoscale are achieved with various polarization states on the Poincaré sphere using a plasmonic nanoantenna. A novel plasmonic nanoantenna is illuminated with diffraction-limited linearly polarized light. It is demonstrated that the plasmonic resonances of perpendicular and longitudinal components of the nanoantenna and the angle of incident polarization can be tuned to obtain optical spots beyond the diffraction limit with a desired polarization and handedness.
机译:结果表明,可以使用等离激元纳米天线将纳米级光学点的偏振态控制到庞加莱球上的各个点。使用等离激元纳米天线,在庞加莱(Poincaré)球上以各种偏振态实现了纳米级的线性,圆形和椭圆偏振近场光斑。一种新颖的等离子纳米天线被衍射极限线性偏振光照射。已经证明,可以调节纳米天线的垂直和纵向分量的等离子体共振和入射极化角,以获得具有期望的极化和惯性的衍射极限之外的光斑。

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