• Laser & Optoelectronics Progress
  • Vol. 56, Issue 11, 110601 (2019)
Tonglu Wang*, Xinpeng Sun, Ye Li, Junfeng Shi, Lin Xu, Zhaoyang Li, and Yannan Zang
Author Affiliations
  • Institute of Detection and Countermeasure Technology, China Southern Industrial Academy, Beijing 102209, China
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    DOI: 10.3788/LOP56.110601 Cite this Article Set citation alerts
    Tonglu Wang, Xinpeng Sun, Ye Li, Junfeng Shi, Lin Xu, Zhaoyang Li, Yannan Zang. Simulation of Coherent Propagation of Nineteen-Laser-Beam Array[J]. Laser & Optoelectronics Progress, 2019, 56(11): 110601 Copy Citation Text show less
    Normalized far-field distribution on exit surface of 19-beam hexagonal array
    Fig. 1. Normalized far-field distribution on exit surface of 19-beam hexagonal array
    Influence of truncation factor on power in bucket
    Fig. 2. Influence of truncation factor on power in bucket
    Power ratios in bucket within different tilt angle ranges for unit beam
    Fig. 3. Power ratios in bucket within different tilt angle ranges for unit beam
    Normalized far-field distributions corresponding to random phase residuals. (a) Without phase difference; (b) phase difference within range of 0-π/6
    Fig. 4. Normalized far-field distributions corresponding to random phase residuals. (a) Without phase difference; (b) phase difference within range of 0-π/6
    Power ratios in bucket corresponding to different phase residual ranges
    Fig. 5. Power ratios in bucket corresponding to different phase residual ranges
    Normalized far-field distributions under different turbulence conditions. (a) Weak turbulence; (b) moderate turbulence; (c) strong turbulence
    Fig. 6. Normalized far-field distributions under different turbulence conditions. (a) Weak turbulence; (b) moderate turbulence; (c) strong turbulence
    Tonglu Wang, Xinpeng Sun, Ye Li, Junfeng Shi, Lin Xu, Zhaoyang Li, Yannan Zang. Simulation of Coherent Propagation of Nineteen-Laser-Beam Array[J]. Laser & Optoelectronics Progress, 2019, 56(11): 110601
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