[1]
[2] J C Leader. Atmospheric propagation of partially coherent radiation[J]. J Opt Soc Am, 1978, 68(2): 175-185.
[3] J C Leader. Intensity fluctuations resulting from partially coherent light propagating through atmospheric turbulence[J]. J Opt Soc Am, 1979, 69(1): 73-84.
[4]
[5] J C Leader. Beam-intensity fluctuations in atmospheric turbulence[J]. J Opt Soc Am, 1981, 71(5): 542-558.
[6]
[7]
[8] O Korotkova, L C Andrews, R L Phillips. A lidar model for a rough-surface target: method of partial coherence [C]// Proceedings of SPIE, 2004, 5237: 49-60.
[9] O Korotkova, L C Andrews. Speckle propagation through atmospheric turbulence: effects of partial coherence of the target [C]//Laser Radar Technology and Applications, SPIE, 2002, 4723: 98-109.
[10]
[11]
[12] Ji Xiaoling, Lv Baida. Effect of Turbulence on the Spectral Shift of Partially Coherent Light [J]. Chinese Journal of Lasers, 2005, 32(5): 506-510. (in Chinese)
[13]
[14] T Shirai, A Dogariu, E Wolf. Mode analysis of spreading of partially coherent beams propagating through atmospheric turbulence[J]. J Opt Soc Am A, 2003, 20(6): 1094-1192.
[15] Qian Xianmei, Zhu Wenyue, Rao Ruizhong. Numerical simulation of turbulent effects of laser propagation along a ground-space slant atmospheric path [J]. Infrared and Laser Engineering, 2008, 37(5): 777-782. (in Chinese)
[16]
[17] Zhang Yixin, Wang Gaogang. Average intensity and short term beam spread of a laser beam propagating in a slant path atmosphere [J]. Infrared and Laser Engineering, 2007, 36(2): 167-171. (in Chinese)