Multimode Laser Beam Field Correlations for Vertical Links Operating in Oceanic Turbulence

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Abstract

In underwater optical vertical link medium, based on the extended Huygens-Fresnel principle, multimode laser beam field correlation is derived and evaluated analytically in the Atlantic Ocean at high latitude and high latitude- low latitudes. With the depth of seawater, the coherence length of a spherical wave operating in the underwater turbulent medium is demonstrated for the range of 0-4000 m. By utilizing the coherence length varying with parameters such as the rate of dissipation of turbulent kinetic energy per unit mass of fluid epsilon, the rate of dissipation of the mean squared temperature chi(T) and non-dimensional representing the relative strength of temperature and salinity fluctuations omega, which depend on depth, the field correlation is examined in detail for single modes and multimode. Their variations are exhibited. Our results indicate clearly that as the mode increases, field correlation gets better.

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Keywords

Laser Beams, Correlation, Ocean Temperature, Coherence, Optical Sensors, Salinity (Geophysical), Optical Receivers, Indexes, Fluctuations, Optical Distortion, Oceanic Turbulence, Coherence Length, Intensity, Oceanic Vertical Link, Multimode Beam

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61

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3

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1

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8
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