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Mean energy distribution and averaged pattern of optical vortices of a partially coherent light beam propagating in a randomly inhomogeneous atmosphere

机译:在随机非均匀大气中传播的部分相干光束的平均能量分布和光学涡旋的平均模式

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Spatial evolution was studied of energy and phase distribution of a fluctuating laser beam carrying an optical vortex. Fluctuations of the optical field were induced by fluctuations of the generator parameters or by random variations of the index of refraction in a thin layer of the atmosphere represented by a phase screen. It was shown that vortex-like flow of energy typical for a coherent beam manifests itself in averaged characteristics of a partially coherent beam. Particularly, the mean tilt of the wavefront can be represented as a sum of the vortex and potential components, while the circular flow of energy is influenced mainly by the rotor of the vector field of wavefront tilts. As it turned out, after the phase screen having a quadratic structure function of fluctuations the vector filed of energy flow is formed with the vortex component corresponding to the model of fluid current known as Scully's vortex. The potential component of the filed induces focusing of the beam. This results in the gradual annihilation of the vortex in the far filed.
机译:研究了带有光学涡旋的波动激光束的能量和相位分布的空间演化。光场的波动是由发生器参数的波动引起的,或者是由相位屏所代表的大气薄层中折射率的随机变化引起的。结果表明,相干光束的典型涡旋状能量流表现为部分相干光束的平均特性。特别地,波前的平均倾斜度可以表示为涡旋和势能之和,而能量的循环流动主要受波前倾斜度矢量场的转子影响。事实证明,在具有波动的二次结构函数的相位屏蔽之后,能量流的矢量场形成有涡旋分量,该涡旋分量对应于称为Scully涡旋的流体电流模型。场的潜在分量引起光束的聚焦。这导致远场中的涡旋逐渐消失。

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