Zhang Runzhe, Qiao Siyuan, Luo Yixiong, Guo Yinghui, Li Xiaoyin, Zhang Qi, Fan Yulong, Zhao Zeyu, Luo Xiangang
National Key Laboratory of Optical Field Manipulation Science and Technology, Chinese Academy of Sciences, Chengdu 610209, China.
State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China.
Nanomaterials (Basel). 2024 May 25;14(11):929. doi: 10.3390/nano14110929.
Quasi-continuous-phase metasurfaces overcome the side effects imposed by high-order diffraction on imaging and can impart optical parameters such as amplitude, phase, polarization, and frequency to incident light at sub-wavelength scales with high efficiency. Structured-light three-dimensional (3D) imaging is a hot topic in the field of 3D imaging because of its advantages of low computation cost, high imaging accuracy, fast imaging speed, and cost-effectiveness. Structured-light 3D imaging requires uniform diffractive optical elements (DOEs), which could be realized by quasi-continuous-phase metasurfaces. In this paper, we design a quasi-continuous-phase metasurface beam splitter through a vector iterative Fourier transform algorithm and utilize this device to realize structured-light 3D imaging of a target object with subsequent target reconstruction. A structured-light 3D imaging system is then experimentally implemented by combining the fabricated quasi-continuous-phase metasurface illuminated by the vertical-cavity surface-emitting laser and a binocular recognition system, which eventually provides a new technological path for the 3D imaging field.
准连续相位超表面克服了高阶衍射对成像造成的副作用,并且能够在亚波长尺度上高效地赋予入射光诸如振幅、相位、偏振和频率等光学参数。结构光三维(3D)成像因其计算成本低、成像精度高、成像速度快和性价比高等优点,成为3D成像领域的一个热门话题。结构光3D成像需要均匀的衍射光学元件(DOE),而准连续相位超表面能够实现这一点。在本文中,我们通过矢量迭代傅里叶变换算法设计了一种准连续相位超表面分束器,并利用该器件实现了目标物体的结构光3D成像及后续的目标重建。然后,通过将垂直腔面发射激光器照射的制造好的准连续相位超表面与双目识别系统相结合,实验实现了一个结构光3D成像系统,这最终为3D成像领域提供了一条新的技术路径。