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Three-dimensional orientation-unlimited polarization encryption by a single optically configured vectorial beam

机译:通过单个光学配置的矢量光束进行三维方向无限制极化加密

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摘要

The interplay between light polarization and matter is the basis of many fundamental physical processes and applications. However, the electromagnetic wave nature of light in free space sets a fundamental limit on the three-dimensional polarization orientation of a light beam. Although a high numerical aperture objective can be used to bend the wavefront of a radially polarized beam to generate the longitudinal polarization state in the focal volume, the arbitrary three-dimensional polarization orientation of a beam has not been achieved yet. Here we present a novel technique for generating arbitrary three-dimensional polarization orientation by a single optically configured vectorial beam. As a consequence, by applying this technique to gold nanorods, orientation-unlimited polarization encryption with ultra-security is demonstrated. These results represent a new landmark of the orientation-unlimited three-dimensional polarization control of the light–matter interaction.
机译:光偏振和物质之间的相互作用是许多基本物理过程和应用的基础。但是,自由空间中的光的电磁波性质对光束的三维偏振方向设置了基本限制。尽管可以使用高数值孔径的物镜来弯曲径向偏振光束的波阵面以在焦点体积中生成纵向偏振态,但尚未实现光束的任意三维偏振取向。在这里,我们提出了一种新颖的技术,用于通过单个光学配置的矢量光束生成任意三维偏振方向。结果,通过将该技术应用于金纳米棒,证明了具有超安全性的取向无限的极化加密。这些结果代表了光-物质相互作用的方向无限的三维偏振控制的新标志。

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