Year
Month

(Peer-Reviewed) Three-dimensional measurement enabled by single-layer all-in-one transmitting-receipting optical metasystem
Xiaoli Jing 景晓丽 ¹ ², Qiming Liao 廖启明 ¹, Misheng Liang 梁密生 ², Bo Wang 王博 ³, Junjie Li 李俊杰 ³, Yongtian Wang 王涌天 ¹, Rui You 尤睿 ², Lingling Huang 黄玲玲 ¹
¹ Beijing Engineering Research Center of Mixed Reality and Advanced Display, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China
中国 北京 北京理工大学光电学院 北京市混合现实与新型显示工程技术研究中心
² Laboratory of Intelligent Microsystems, Beijing Information Science and Technology University, Beijing 100191, China
中国 北京 北京信息科技大学智能微系统实验室
³ Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100191, China
中国 北京 中国科学院物理研究所 北京凝聚态物理国家实验室
Opto-Electronic Advances , 2025-06-19
Abstract

Optical three-dimensional (3D) measurement is a critical tool in micro-nano manufacturing, the automotive industry, and medical technology due to its nondestructive nature, high precision, and sensitivity. However, passive light field system still requires a refractive primary lens to collect light of the scene, and structured light can not work well with the highly refractive object.

Meta-optics, known for being lightweight, compact, and easily integrable, has enabled advancements in passive metalens-array light fields and active structured light techniques. Here, we propose and experimentally validate a novel 3D measurement metasystem. It features a transmitting metasurface generating chromatic line focuses as depth markers and a symmetrically arranged receiving metasurface collecting depth-dependent spectral responses.

A lightweight, physically interpretable algorithm processes these data to yield high-precision depth information efficiently. Experiments on metallic and wafer materials demonstrate a depth accuracy of ±20 µm and lateral accuracy of ±10 µm. This single-layer optical metasystem, characterized by simplicity, micro-level accuracy, easy installation and scalability, shows potential for diverse applications, including process control, surface morphology analysis, and production measurement.
Three-dimensional measurement enabled by single-layer all-in-one transmitting-receipting optical metasystem_1
Three-dimensional measurement enabled by single-layer all-in-one transmitting-receipting optical metasystem_2
Three-dimensional measurement enabled by single-layer all-in-one transmitting-receipting optical metasystem_3
Three-dimensional measurement enabled by single-layer all-in-one transmitting-receipting optical metasystem_4
  • Harmonic heterostructured pure Ti fabricated by laser powder bed fusion for excellent wear resistance via strength-plasticity synergy
  • Desheng Li, Huanrong Xie, Chengde Gao, Huan Jiang, Liyuan Wang, Cijun Shuai
  • Opto-Electronic Advances
  • 2025-09-25
  • Strong-confinement low-index-rib-loaded waveguide structure for etchless thin-film integrated photonics
  • Yifan Qi, Gongcheng Yue, Ting Hao, Yang Li
  • Opto-Electronic Advances
  • 2025-09-25
  • Flicker minimization in power-saving displays enabled by measurement of difference in flexoelectric coefficients and displacement-current in positive dielectric anisotropy liquid crystals
  • Junho Jung, HaYoung Jung, GyuRi Choi, HanByeol Park, Sun-Mi Park, Ki-Sun Kwon, Heui-Seok Jin, Dong-Jin Lee, Hoon Jeong, JeongKi Park, Byeong Koo Kim, Seung Hee Lee, MinSu Kim
  • Opto-Electronic Advances
  • 2025-09-25
  • Dual-frequency angular-multiplexed fringe projection profilometry with deep learning: breaking hardware limits for ultra-high-speed 3D imaging
  • Wenwu Chen, Yifan Liu, Shijie Feng, Wei Yin, Jiaming Qian, Yixuan Li, Hang Zhang, Maciej Trusiak, Malgorzata Kujawinska, Qian Chen, Chao Zuo
  • Opto-Electronic Advances
  • 2025-09-25
  • Parallel all-optical encoded CDMA-driven anti-interference LiDAR for 78 MHz point acquisition
  • Shujian Gong, Peng Tian, Yinghui Guo, Xiaoyin Li, Mingbo Pu, Qi Zhang, Yanqin Wang, Heping Liu, Xiangang Luo
  • Opto-Electronic Technology
  • 2025-09-22
  • Enrichment strategies in surface-enhanced Raman scattering: theoretical insights and optical design for enhanced light-matter interaction
  • Zhiyang Pei, Chang Ji, Mingrui Shao, Yang Wu, Xiaofei Zhao, Baoyuan Man, Zhen Li, Jing Yu, Chao Zhang
  • Opto-Electronic Science
  • 2025-09-18
  • Phase matching sampling algorithm for sampling rate reduction in time division multiplexing optical fiber sensor system
  • Junhui Wu, Zhilin Xu, Yi Shi, Yurong Liang, Qizhen Sun
  • Opto-Electronic Technology
  • 2025-09-18
  • Three-dimensional integrated optical fiber devices: emergence and applications
  • Tingting Yuan, Xiaotong Zhang, Shitai Yang, Donghui Wang, Libo Yuan
  • Opto-Electronic Technology
  • 2025-09-18
  • Femtosecond laser micro/nano-processing via multiple pulses incubation
  • Jingbo Yin, Zhenyuan Lin, Lingfei Ji, Minghui Hong
  • Opto-Electronic Technology
  • 2025-09-18
  • All-optical digital logic and neuromorphic computing based on multi-wavelength auxiliary and competition in a single microring resonator
  • Qiang Zhang, Yingjun Fang, Ning Jiang, Anran Li, Jiahao Qian, Yiqun Zhang, Gang Hu, Kun Qiu
  • Opto-Electronic Science
  • 2025-08-28
  • Fast step heterodyne light-induced thermoelastic spectroscopy gas sensing based on a quartz tuning fork with high-frequency of 100 kHz
  • Yuanzhi Wang Ying He, Shunda Qiao, Xiaonan Liu, Chu Zhan, Xiaoming Duan, Yufei Ma
  • Opto-Electronic Advances
  • 2025-08-28
  • Advances and new perspectives of optical systems and technologies for aerospace applications: a comprehensive review
  • Sandro Oliveira, Jan Nedoma, Radek Martinek, Carlos Marques
  • Opto-Electronic Advances
  • 2025-08-25



  • Observation of polaronic state assisted sub-bandgap saturable absorption        Fast-zoom and high-resolution sparse compound-eye camera based on dual-end collaborative optimization
    About
    |
    Contact
    |
    Copyright © PubCard