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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Off-axis average transmittance and beam spread of a partially coherent flat-topped beam in a turbulent underwater medium
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Off-axis average transmittance and beam spread of a partially coherent flat-topped beam in a turbulent underwater medium

机译:湍流水下介质中部分相干的扁平梁的轴外平均透射率和光束扩散

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摘要

The effects of oceanic turbulence on the off-axis optical transmittance and beam spread are examined when a partially coherent flat-topped beam wave propagates in an underwater medium. To observe the oceanic turbulence effect, the power spectrum of homogeneous and isotropic oceanic water combining the effects of salinity and temperature is used. Employing the extended Huygens-Fresnel integral and Carter's definition for the general beam formulation that is applied to a partially coherent flat-topped beam, the effects of the parameters of power spectrum, the link on the off-axis average transmittance, and beam spread are analyzed. The results obtained with the help of the MATLAB program indicate that if the flatness of the optical beam increases, the average transmittance increases, and the beam spread decreases. Partial coherence is found to be inversely proportional to the average transmittance and directly proportional to beam spread. Increase in the source size is found to increase the average transmittance and to reduce the beam spread. Loss of the kinetic energy of fluid causes less turbulence. The rate of dissipation of kinetic energy per unit mass of fluid is directly proportional to the average transmittance, while it is inversely proportional to the beam spread. The rate of dissipation of the mean square temperature is inversely proportional to the average transmittance and directly proportional to the beam spread. When the temperature-induced optical turbulence is dominant, the average transmittance almost never decreases. However, the salinity-induced optical turbulence sharply reduces the average transmittance and increases the beam spread of the partially coherent flat-topped beam in underwater turbulence. When the off-axis parameter becomes larger, average transmittance decreases. (C) 2019 Optical Society of America
机译:当在水下介质中传播部分相干的平顶光束波传播时,检查海洋湍流对轴外光学透射率和光束扩散的影响。为了观察海洋湍流效应,使用组合盐度和温度效果的均匀和各向同性海水的功率谱。采用延伸的Huygens-Fresnel积分和卡特的定义,用于施加到部分相干的平顶光束的一般光束配方,功率谱参数的效果,偏离轴平均透射率的链接和光束扩展分析。在MATLAB程序的帮助下获得的结果表明,如果光束的平坦度增加,则平均透射率增加,并且光束扩散减小。发现部分相干性与平均透射率成反比,与光束扩散成比例。发现源大小的增加来增加平均透射率并减小光束扩展。损失流体的动能导致湍流较小。每单位质量流体的动能耗散速率与平均透射率成正比,而它与光束扩散成反比。平均方形温度的耗散速率与平均透射率成反比,并且与光束扩散成比例。当温度诱导的光学湍流优势时,平均透射率几乎从未减少。然而,盐度诱导的光学湍流急剧降低了平均透射率,并增加了在水下湍流中的部分相干的扁平梁的光束扩散。当轴轴参数变大时,平均透射率降低。 (c)2019年光学学会

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