• Opto-Electronic Engineering
  • Vol. 51, Issue 4, 240001-1 (2024)
Xizheng Ke1,2,* and Xin Li1
Author Affiliations
  • 1Xi'an University of Technology, School of Automation and Information Engineering, Xi’an, Shaanxi 710048, China
  • 2Shaanxi Civil-Military Integration Key Laboratory of Intelligence Collaborative Networks, Xi’an, Shaanxi 710048, China
  • show less
    DOI: 10.12086/oee.2024.240001 Cite this Article
    Xizheng Ke, Xin Li. Experimental study on inversion of atmospheric turbulence anisotropy by laser beam spot wander[J]. Opto-Electronic Engineering, 2024, 51(4): 240001-1 Copy Citation Text show less
    References

    [1] X B Xu. Effect on laser propagation in the atmospheric turbulence(2011).

    [2] Y Q Dan, Y L Ai, Y G Xu. Propagation properties and turbulence distance of partially coherent Sinh-Gaussian beams in non-Kolmogorov atmospheric turbulence. Optik, 127, 9320-9327(2016).

    [3] Q J Xu, M B Yan, H B Song et al. Study on PJ model of evaporation duct based on atmospheric turbulence effect. J Ocean Technol, 42, 20-27(2023).

    [4] V I Tatarskiĭ. Wave Propagation in a Turbulent Medium(1961).

    [5] A Consortini, L Ronchi, L Stefanutti. Investigation of atmospheric turbulence by narrow laser beams. Appl Opt, 9, 2543-2547(1970).

    [6] V P Lukin. Investigation of the anisotropy of the atmospheric turbulence spectrum in the low-frequency range. Proc SPIE, 2471, 347-355(1995).

    [7] M S Belen'kii, J D Barchers, S J Karis et al. Preliminary experimental evidence of anisotropy of turbulence and the effect of non-Kolmogorov turbulence on wavefront tilt statistics. Proc SPIE, 3762, 396-406(1999).

    [8] M S Belen'kii, S J Karis, C L Osmon et al. Experimental evidence of the effects of non-Kolmogorov turbulence and anisotropy of turbulence. Proc SPIE, 3749, 50-51(1999).

    [9] X S Ma, W Y Zhu, R Z Rao. Anisotropy of beam wander of focused beam in atmospheric boundary layer above sea level. High Power Laser Part Beams, 18, 922-926(2006).

    [10] Q Zhao, M Zhong, B D Lü. Experimental study about laser beam wander in atmosphere. Laser Technol, 34, 532-534(2010).

    [11] J Mei. Experimental study of influences of anisotropic turbulence on light propagation at the surface layer(2018).

    [12] P P Chen, J Qu, Z X Zhou et al. Beam wander of array beams propagating through anisotropic turbulent atmosphere. Chin J Quantum Electron, 36, 270-277(2019).

    [13] P F Wu, G Y You, T Li. Experimental investigation on atmospheric turbulence and light in-tensity scintillation at night in Xi'an area. J Optoelectron·Laser, 32, 1221-1228(2021).

    [14] X C Ma. Atmospheric turbulence parameters retrieved from optical beam wander and quality factor and related research(2023). https://doi.org/10.27722/d.cnki.gzgmh.2022.000270

    [16] X Z Ke, J L Wu, S J Yang. Research progress and prospect of atmospheric turbulence for wireless optical communication. Chin J Radio Sci, 36, 323-339(2021).

    [17] N Jiang, X Y Li, C H Niu et al. Experimental study on the influence of atmospheric turbulence on laser spatial transmission characteristics. Laser Technol, 46, 708-712(2022).

    [18] J A Kong, J Wu. Electromagnetic Wave Theory, 527-528(2003).

    Xizheng Ke, Xin Li. Experimental study on inversion of atmospheric turbulence anisotropy by laser beam spot wander[J]. Opto-Electronic Engineering, 2024, 51(4): 240001-1
    Download Citation