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Real-time holographic camera for obtaining real 3D scene hologram

  • Zhao Song Li
  • , Chao Liu
  • , Xiao Wei Li
  • , Yi Zheng
  • , Qian Huang
  • , Yi Wei Zheng
  • , Ye Hao Hou
  • , Chen Liang Chang
  • , Da Wei Zhang
  • , Song Lin Zhuang
  • , Di Wang*
  • , Qiong Hua Wang*
  • *Corresponding author for this work
  • Beihang University
  • University of Shanghai for Science and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

As a frontier technology, holography has important research values in fields such as bio-micrographic imaging, light field modulation and data storage. However, the real-time acquisition of 3D scenes and high-fidelity reconstruction technology has not yet made a breakthrough, which has seriously hindered the development of holography. Here, a novel holographic camera is proposed to solve the above inherent problems completely. The proposed holographic camera consists of the acquisition end and the calculation end. At the acquisition end of the holographic camera, specially configured liquid materials and liquid lens structure based on voice-coil motor-driving are used to produce the liquid camera, so that the liquid camera can quickly capture the focus stack of the real 3D scene within 15 ms. At the calculation end, a new structured focus stack network (FS-Net) is designed for hologram calculation. After training the FS-Net with the focus stack renderer and learnable Zernike phase, it enables hologram calculation within 13 ms. As the first device to achieve real-time incoherent acquisition and high-fidelity holographic reconstruction of a real 3D scene, our proposed holographic camera breaks technical bottlenecks of difficulty in acquiring the real 3D scene, low quality of the holographic reconstructed image, and incorrect defocus blur. The experimental results demonstrate the effectiveness of our holographic camera in the acquisition of focal plane information and hologram calculation of the real 3D scene. The proposed holographic camera opens up a new way for the application of holography in fields such as 3D display, light field modulation, and 3D measurement.

Original languageEnglish
Article number74
JournalLight: Science and Applications
Volume14
Issue number1
DOIs
StatePublished - Dec 2025

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