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在湍流大气中传播的相干和部分相干暗空心光束的M2因子

M2-factor of coherent and partially coherent dark hollow beams propagating in turbulent atmosphere.

作者信息

Yuan Yangsheng, Cai Yangjian, Qu Jun, Eyyuboğlu Halil T, Baykal Yahya, Korotkova Olga

机构信息

School of Physical Science and Technology, Soochow University, Suzhou 215006, China.

出版信息

Opt Express. 2009 Sep 28;17(20):17344-56. doi: 10.1364/OE.17.017344.

Abstract

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.

摘要

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。

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