Wen Dandan, Cadusch Jasper J, Meng Jiajun, Crozier Kenneth B
Department of Electrical and Electronic Engineering, University of Melbourne, Melbourne, Victoria 3010, Australia.
School of Physics, University of Melbourne, Melbourne, Victoria 3010, Australia.
Nano Lett. 2021 Feb 24;21(4):1735-1741. doi: 10.1021/acs.nanolett.0c04555. Epub 2021 Feb 5.
Metasurface-based holography presents opportunities for applications that include optical displays, data storage, and optical encryption. Holograms that control polarization are sometimes referred to as vectorial holograms. Most studies on this topic have concerned devices that display different images when illuminated with different polarization states. Fewer studies have demonstrated holographic images whose polarization varies spatially, i.e., as a function of the position within the image. Here, we experimentally demonstrate a vectorial hologram that produces an image with a spatially continuous distribution of polarization states, for the first time to our knowledge. An unlimited number of polarization states can be achieved within the image. Furthermore, the holographic image and its polarization map (polarization vs position in image) are independent. The same image can be thus encoded with different polarization maps. As far as we know, our approach is conceptually new. We anticipate that it could broaden the application scope of metasurface holography.
基于超表面的全息术为包括光学显示、数据存储和光学加密在内的应用提供了机会。控制偏振的全息图有时被称为矢量全息图。关于这个主题的大多数研究都涉及到在用不同偏振态照明时显示不同图像的器件。较少的研究展示了偏振在空间上变化的全息图像,即作为图像内位置的函数。在这里,据我们所知,我们首次通过实验证明了一种矢量全息图,它能产生具有偏振态空间连续分布的图像。在图像内可以实现无限数量的偏振态。此外,全息图像及其偏振图(图像中偏振与位置的关系)是相互独立的。因此,同一图像可以用不同的偏振图进行编码。据我们所知,我们的方法在概念上是全新的。我们预计它可能会拓宽超表面全息术的应用范围。