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作 者:张艳红 卢腾飞 刘永欣 陈子阳 孙顺红[2] ZHANG Yanhong;LU Tengfei;LIU Yongxin;CHEN Ziyang;SUN Shunhong(Fujian Key Laboratory of Light Propagation and Transformation, College of Information Science and Engineering, Huaqiao University, Xiamen 361021, China;Zhangzhou City College, Zhangzhou 363000, China)
机构地区:[1]华侨大学信息科学与工程学院,福建省光传输与变换重点实验室,厦门361021 [2]漳州城市职业学院,漳州363000
出 处:《激光技术》2020年第3期310-314,共5页Laser Technology
基 金:国家自然科学基金资助项目(61505059);福建省中青年教师教育科研资助项目(JAT160917)。
摘 要:为了研究非均匀偏振光束在海洋湍流中的光强特性,采用广义的惠更斯-菲涅耳原理,得到非均匀偏振光束经过海洋湍流传输后的光强分布,并对非均匀偏振光束在海水中传播的传输特性进行了研究。结果表明,非均匀偏振光束的参量n和K越大,其光强分布偏离高斯分布越明显,但随着传输距离的增大,海洋湍流对光束的影响也增大,光强分布又回到高斯分布;随着均方温度耗散率χT或温度与盐度波动的相对强度w的增大,或者单位质量液体中的湍流动能的耗散率ε的减小,非均匀偏振光束的光强分布就会更趋于高斯分布。该研究结果在海洋光通信以及成像方面存在潜在的应用价值。In order to study the intensity characteristics of non-uniformly polarized beams in ocean turbulence, the intensity distribution of the non-uniformly polarized(NUP) beams propagating in the oceanic turbulence was obtained by using the extended Huygens-Fresnel diffraction integral formula. The intensity characteristics of the non-uniformly polarized beams propagating in the seawater were investigated in great detail. It is found that the larger the parameters n and K of the non-uniformly polarized beam are, the more obvious the intensity distribution deviates from the Gaussian distribution. However, with the increase of the propagation distance in the ocean, the intensity distribution returns to the Gaussian distribution under the influence of the oceanic turbulence. In addition, the results also show that the larger the χ_T is, or the smaller the ε is, or the larger the w is, the more the intensity distribution tends to be Gaussian distribution. The research results have potential application value in ocean optical communication and imaging.
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