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Coherence degree of the fundamental Bessel-Gaussian beam in turbulent atmosphere

机译:湍流中基本贝塞尔高斯光束的相干度

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In this article the coherence of a fundamental Bessel-Gaussian optical beam in turbulent atmosphere is analyzed. The problem analysis is based on the solution of the equation for the transverse second-order mutual coherence function of a fundamental Bessel-Gaussian optical beam of optical radiation. The behavior of a coherence degree of a fundamental Bessel-Gaussian optical beam depending on parameters of an optical beam and characteristics of turbulent atmosphere is examined. It was revealed that at low levels of fluctuations in turbulent atmosphere the coherence degree of a fundamental Bessel-Gaussian optical beam has the characteristic oscillating appearance. At high levels of fluctuations in turbulent atmosphere the coherence degree of a fundamental Bessel-Gaussian optical beam is described by an one-scale decreasing curve which in process of increase of level of fluctuations on a line of formation of a laser beam becomes closer to the same characteristic of a spherical optical wave.
机译:本文分析了湍流大气中基本贝塞尔-高斯光束的相干性。问题分析基于光辐射的基本贝塞尔-高斯光束的横向二阶互相关函数的方程式求解。研究了基本贝塞尔-高斯光束的相干度取决于光束的参数和湍流气氛的特性的行为。结果表明,在湍流大气中波动较小的情况下,基本贝塞尔-高斯光束的相干度具有振荡特征。在湍流大气中存在高水平的波动时,基本贝塞尔-高斯光束的相干度由一阶递减曲线描述,该曲线在激光束形成线上的波动水平增加的过程中越来越接近于球形光波具有相同的特性。

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