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Generation of infinitely long phase screens for modeling of optical wave propagation in atmospheric turbulence

机译:生成无限长相位屏幕,用于建模大气湍流中的光波传播

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摘要

Numerical modeling of optical wave propagation in atmospheric turbulence is traditionally performed by using the so-called 'split'-operator method, where the influence of the propagation medium's refractive index inhomogeneities is accounted for only within a set of infinitely narrow phase distorting layers (phase screens). These phase screens are generated on a numerical grid of finite size, which corresponds to a rather narrow slice (spatial area) of atmospheric turbulence. In several important applications including laser target tracking, remote sensing, adaptive optics, and atmospheric imaging, optical system performance depends on atmospheric turbulence within an extended area that significantly exceeds the area associated with the numerical grid. In this paper we discuss methods that allow the generation of a family of long (including infinitely long) phase screens representing an extended (in one direction) area of atmospheric turbulence-induced phase distortions. This technique also allows the generation of long phase screens with spatially inhomogeneous statistical characteristics.
机译:传统上,大气湍流中光波传播的数值模型是使用所谓的“分裂”算子方法进行的,其中传播介质的折射率不均匀性的影响仅在一组无限窄的相位扭曲层(相屏幕)。这些相位屏蔽是在有限尺寸的数字网格上生成的,该网格对应于大气湍流的相当狭窄的切片(空间区域)。在包括激光目标跟踪,遥感,自适应光学和大气成像在内的几个重要应用中,光学系统的性能取决于扩展区域内的大气湍流,该扩展区域显着超过了与数字网格相关的区域。在本文中,我们讨论了允许生成一系列长(包括无限长)相位屏幕的方法,这些屏幕代表了大气湍流引起的相位畸变的扩展区域(在一个方向上)。该技术还允许生成具有空间不均匀统计特征的长相屏幕。

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