• High Power Laser and Particle Beams
  • Vol. 32, Issue 7, 071008 (2020)
Xiaolong Ni1、2, Xufang Zhu1, Xin Yu2、3, Haifeng Yao1、2, Chunyi Chen4, and Zhi Liu1、*
Author Affiliations
  • 1National and Local Joint Engineering Research Center of Space Optoelectronics Technology, Changchun University of Science and Technology, Changchun 130022, China
  • 2Changchun Lighteek Photonics Co., Ltd, Changchun 130000, China
  • 3College of Optoelectronic Engineering, Changchun University of Science and Technology, Changchun 130022, China
  • 4School of Computer Science and Technology, Changchun University of Science and Technology, Changchun 130022, China
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    DOI: 10.11884/HPLPB202032.200078 Cite this Article
    Xiaolong Ni, Xufang Zhu, Xin Yu, Haifeng Yao, Chunyi Chen, Zhi Liu. Laser beam coherence and divergence angle complex controlling technique[J]. High Power Laser and Particle Beams, 2020, 32(7): 071008 Copy Citation Text show less
    References

    [1] Kotkova O, rews L C, Phillips R L. Speckle propagation through atmospheric turbulence: Effects of a rom phase screen at the source[C]International Symposium on Optical Science Technology. 2002: 98109.

    [2] Korotkova O, Andrews L C, Phillips R L. Model for a partially coherent Gaussian beam in atmospheric turbulence with application in Lasercom[J]. Optical Engineering, 43, 341(2016).

    [3] Lee I E, Ghassemlooy Z, Ng W P. Joint optimization of partially coherent Gaussian beam for free-space optical communication over turbulent channels with pointing errors[J]. Optics Letters, 38, 350-352(2013).

    [4] Borah D K, Voelz D G. Spatially partially coherent beam parameter optimization for free space optical communications[J]. Opt Express, 18, 20746-20758(2010).

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    [9] Deng P, Kavehrad M, Liu Z. Capacity of MIMO free space optical communications using multiple partially coherent beams propagation through non-Kolmogorov strong turbulence[J]. Opt Express, 21, 15213-15229(2013).

    [11] Chen Chunyi, Yang Huamin, Zhou Zhou. Effects of source spatial partial coherence on temporal fade statistics of irradiance flux in free-space optical links through atmospheric turbulence[J]. Opt Express, 24, 29731-29743(2013).

    [13] Jennifer C R, Davidson F M. Atmospheric turbulence effects on a partially coherent Gaussian beam: Implications for free-space laser communication[J]. J. Opt Soc Am A, 19, 1794-1801(2002).

    [14] Chen Chunyi, Yang Huamin, Kavehrad M. Validity of quadratic two-source spherical wave structure functions in analysis of beam propagation through generalized atmospheric turbulence[J]. Optics Communications, 332, 343-349(2014).

    [15] Shirai T, Wolf E. Coherence and polarization of electromagnetic beams modulated by random phase screens and their changes on propagation in free space[J]. J Opt Soc Am A, 21, 1907-1916(2004).

    [20] Felde C V, Bogatyryova H V, Polyanskii P V, et al. Young''s diagnostics of spatial coherence phase singularities[C]Proc of SPIE. 2014: 62540D.

    Xiaolong Ni, Xufang Zhu, Xin Yu, Haifeng Yao, Chunyi Chen, Zhi Liu. Laser beam coherence and divergence angle complex controlling technique[J]. High Power Laser and Particle Beams, 2020, 32(7): 071008
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