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Obtaining Circularly Polarized Optical Spots beyond the Diffraction Limit Using Plasmonic Nano-Antennas

机译:使用等离子体纳米天线获得超出衍射极限的圆极化光学点

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With advances in nanotechnology, emerging plasmonic nano-optical applications, such as all-optical magnetic recording, require circularly-polarized electromagnetic radiation beyond the diffraction limit. In this study, a plasmonic cross-dipole nano-antenna is investigated to obtain a circularly polarized near-field optical spot with a size smaller than the diffraction limit of light. The performance of the nano-antenna is investigated through numerical simulations. In the first part of this study, the nano-antenna is illuminated with a diffraction-limited circularly-polarized radiation to obtain circularly polarized optical spots at nanoscale. In the second part, diffraction limited linearly polarized radiation is used. An optimal configuration for the nano-antenna and the polarization angle of the incident light is identified to obtain a circularly polarized optical spot beyond the diffraction limit from a linearly polarized diffraction limited radiation.
机译:随着纳米技术的进展,新兴等离子体纳米光学应用,例如全光磁记录,需要超出衍射极限的圆极化电磁辐射。在该研究中,研究了等离子体交叉偶极纳米天线以获得尺寸小于光的衍射极限的圆偏振近场光盘。通过数值模拟研究纳米天线的性能。在本研究的第一部分中,纳米天线用衍射限制的圆极化辐射照射,以在纳米级获得圆偏振的光学点。在第二部分中,使用衍射有限的线性偏振辐射。识别出入射光的纳米天线和偏振角的最佳配置,以获得超出线性偏振衍射有限辐射的衍射极限的圆偏振光光斑。

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