首页> 外文期刊>Journal of Russian laser research >EFFECTIVE RADIUS OF CURVATURE AND RAYLEIGH LENGTH OF PARTIALLY-COHERENT ARRAY BEAMS PASSING THROUGH OCEANIC TURBULENCE
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EFFECTIVE RADIUS OF CURVATURE AND RAYLEIGH LENGTH OF PARTIALLY-COHERENT ARRAY BEAMS PASSING THROUGH OCEANIC TURBULENCE

机译:穿过海洋湍流的部分相干阵列光束的曲率和瑞利长度的有效半径

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摘要

Based on the spatial power spectrum of the refractive index of ocean water, we derive analytical expressions for the effective radius of curvature and Rayleigh length of partially-coherent Hermite-Gaussian linear array (PCHGA) beams propagating through oceanic turbulence. In addition, we discuss theoretically and analyze numerically the influence of oceanic turbulence and array parameters. The effective radius of curvature and Rayleigh length of PCHGA beams increase with the relative strength of temperature and salinity fluctuations, the rate of dissipation of turbulent kinetic energy per unit mass of fluid, the array beam number, beam order, and relative separation distance, but decrease with the increase in the rate of dissipation of the mean-square temperature. The analysis provided here will help to understand the propagation of array beams through ocean turbulence.
机译:基于海水折射率的空间功率谱,我们推导了通过海洋湍流传播的部分相干厄米-高斯线性阵列(PCHGA)光束的有效曲率半径和瑞利长度的解析表达式。此外,我们在理论上进行讨论并在数值上分析了海洋湍流和阵列参数的影响。 PCHGA光束的有效曲率半径和瑞利长度随温度和盐度波动的相对强度,每单位质量流体的湍动能消散速率,阵列光束数,光束阶数和相对分离距离而增加,但是随着均方温度耗散率的增加而减小。此处提供的分析将有助于了解阵列光束通过海洋湍流的传播。

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