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Spectrally encoded parallel LiDAR driven by super-bunching light

  • Xuedong Zhang
  • , Xinghui Liu*
  • , Xiangdong Li
  • , Yuanyuan Li
  • , Yunrui Song
  • , Aoni Wei
  • , Kaige Hu
  • , Wenxue Zhang
  • , Zhichun Yang
  • , Jianyong Hu
  • , Ruiyun Chen
  • , Guofeng Zhang
  • , Jie Ma
  • , Liantuan Xiao*
  • , Suotang Jia
  • , Chengbing Qin*
  • *Corresponding author for this work
  • Shanxi University
  • Taiyuan University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Parallel light detection and ranging (LiDAR) is widely adopted for its low computational burden and rapid three-dimensional (3D) reconstruction. Yet, it remains constrained by inter-channel crosstalk and limited long-distance performance. Here, we introduce a spectrally encoded parallel LiDAR based on super-bunching light, exhibiting negligible cross-correlation between wavelengths, enabling quasi-orthogonal channel division without crosstalk. This approach supports robust parallel ranging, rapid and accurate 3D reconstruction, and effective target classification. Our scheme achieves high-precision ranging with errors as low as 4 mm and can detect targets moving at velocities as low as 5 mm/s. It further enables reliable ranging and 3D imaging beyond 40 m, with exceptional anti-interference performance, even when noise exceeds the echo signal by three orders of magnitude. Combining high precision, sensitivity, long-range detection, dynamic target acquisition, precise 3D reconstruction, and robust anti-interference, our LiDAR offers significant potential for enhancing environmental perception technologies.

Original languageEnglish
Article number1161
JournalNature Communications
Volume17
Issue number1
DOIs
StatePublished - Dec 2026
Externally publishedYes

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