Yuan Yangsheng, Cai Yangjian, Qu Jun, Eyyuboğlu Halil T, Baykal Yahya, Korotkova Olga
School of Physical Science and Technology, Soochow University, Suzhou 215006, China.
Opt Express. 2009 Sep 28;17(20):17344-56. doi: 10.1364/OE.17.017344.
Analytical formula is derived for the M(2)-factor of coherent and partially coherent dark hollow beams (DHB) in turbulent atmosphere based on the extended Huygens-Fresnel integral and the second-order moments of the Wigner distribution function. Our numerical results show that the M(2)- factor of a DHB in turbulent atmosphere increases on propagation, which is much different from its invariant properties in free-space, and is mainly determined by the parameters of the beam and the atmosphere. The relative M(2)-factor of a DHB increases slower than that of Gaussian and flat-topped beams on propagation, which means a DHB is less affected by the atmospheric turbulence than Gaussian and flat-topped beams. Furthermore, the relative M(2)-factor of a DHB with lower coherence, longer wavelength and larger dark size is less affected by the atmospheric turbulence. Our results will be useful in long-distance free-space optical communications.
基于扩展的惠更斯-菲涅耳积分和维格纳分布函数的二阶矩,推导了湍流大气中相干和部分相干暗空心光束(DHB)的M²因子的解析公式。我们的数值结果表明,湍流大气中DHB的M²因子在传播过程中会增大,这与其在自由空间中的不变特性有很大不同,并且主要由光束和大气的参数决定。DHB的相对M²因子在传播过程中比高斯光束和平顶光束增加得慢,这意味着DHB比高斯光束和平顶光束受大气湍流的影响更小。此外,相干性较低、波长较长和暗区尺寸较大的DHB的相对M²因子受大气湍流的影响较小。我们的结果将有助于长距离自由空间光通信。