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Precision analysis of turbulence phase screens and their influence on the simulation of Gaussian beam propagation in turbulent atmosphere

机译:湍流相屏的精度分析及其对湍流大气中高斯光束传播仿真的影响

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The slip-step method is widely used in simulating optical wave propagation in turbulent atmosphere, which treats propagation and phase perturbations caused by turbulence separately and in discrete steps along the propagation axis. The phase perturbations are represented by a series of phase screens, and hence, the precision of the phase screen concerns the accuracy of the simulation. In this paper, we first discuss the precision and computational performance of phase screens generated by the subharmonic complemented discrete Fourier transformation (DIET) (DFT-SH) method, three kinds of randomized spectral sampling techniques (sparse spectrum (SS) technique, sparse spectrum technique with uniform wave vectors (SU), randomized DFT technique), and optimization-based (OB) method; then, the simulations are implemented with the phase screens generated by these methods. Some statistical quantities of the received optical field are calculated, such as beam wander variance, long-term beam radius, short-term beam radius, and on-axis scintillation index. The statistical results show that the undersampling of phase screen in the low-frequency region causes underestimation of the values of beam wander variance, long-term beam radius, and focused beam on-axis scintillation index because these quantities are sensitive to the large-scale inhomogeneities. However, the undersampling does not affect the predicted values of the short-term beam radius and collimated beam on-axis scintillation index because these quantities are insensitive to the large-scale inhomogeneities. (C) 2020 Optical Society of America
机译:滑动步骤方法广泛用于模拟湍流大气中的光波传播,其处理由沿传播轴的湍流和离散步骤的湍流引起的传播和相位扰动。相位扰动由一系列相屏来表示,因此,相屏幕的精度涉及模拟的准确性。在本文中,我们首先探讨了次谐互补离散傅里叶变换(饮食)(DFT-SH)方法,三种随机谱采样技术产生的相位屏幕的精度和计算性能(稀疏频谱(SS)技术,稀疏频谱具有均匀波矢量(SU),随机DFT技术的技术,基于优化(OB)方法;然后,使用这些方法生成的相位屏幕实现模拟。计算接收光场的一些统计量,例如光束漫游方差,长期光束半径,短期束半径和轴上的闪烁指数。统计结果表明,低频区域中的相屏幕的下采样导致低估光束漫游方差,长期光束半径和聚焦光束上的轴上闪烁指数的值,因为这些数量对大规模敏感不均匀性。然而,下采样不会影响短期光束半径和准直梁在轴上的闪烁指数的预测值,因为这些数量对大规模的不均匀性不敏感。 (c)2020美国光学学会

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    《Applied optics》 |2020年第12期|共10页
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