Yue Fuyong, Zhang Chunmei, Zang Xiao-Fei, Wen Dandan, Gerardot Brian D, Zhang Shuang, Chen Xianzhong
SUPA, Institute of Photonics and Quantum Sciences, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, UK.
Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology, Shanghai 200093, China.
Light Sci Appl. 2018 Jan 26;7:17129. doi: 10.1038/lsa.2017.129. eCollection 2018.
Images perceived by human eyes or recorded by cameras are usually optical patterns with spatially varying intensity or color profiles. In addition to the intensity and color, the information of an image can be encoded in a spatially varying distribution of phase or polarization state. Interestingly, such images might not be able to be directly viewed by human eyes or cameras because they may exhibit highly uniform intensity profiles. Here, we propose and experimentally demonstrate an approach to hide a high-resolution grayscale image in a square laser beam with a size of less than half a millimeter. An image with a pixel size of 300 × 300 nm is encoded into the spatially variant polarization states of the laser beam, which can be revealed after passing through a linear polarizer. This unique technology for hiding grayscale images and polarization manipulation provides new opportunities for various applications, including encryption, imaging, optical communications, quantum science and fundamental physics.
人眼所感知或相机所记录的图像通常是具有空间变化强度或颜色分布的光学图案。除了强度和颜色之外,图像信息还可以编码在相位或偏振态的空间变化分布中。有趣的是,此类图像可能无法被人眼或相机直接观察到,因为它们可能呈现出高度均匀的强度分布。在此,我们提出并通过实验证明了一种将高分辨率灰度图像隐藏在尺寸小于半毫米的方形激光束中的方法。一个像素尺寸为300×300纳米的图像被编码到激光束的空间变化偏振态中,该图像在通过线性偏振器后可以被揭示出来。这种用于隐藏灰度图像和偏振操纵的独特技术为包括加密、成像、光通信、量子科学和基础物理学在内的各种应用提供了新的机遇。