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Design and implementation of flexible laboratory system for beam propagation study through weak atmospheric turbulence

机译:柔弱大气湍流传播研究的灵活实验室系统的设计与实现

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摘要

Different applications such as astronomy, remote optical sensing and free space optical communications, among others, require both numerical and laboratory experimental simulations of beam propagation through turbulent atmosphere prior to an outdoor test. While rotating phase plates or hot chambers can be applied to such studies, they do not allow changing the atmospheric conditions and the propagation distance in situ. In contrast, the spatial light modulators (SLMs) are a flexible alternative for experimental turbulence simulation. In this work we consider an experimental setup comprising two SLMs for studying laser beam propagation in weak atmospheric turbulence. The changes of atmospheric conditions and propagation distances are properly achieved by the adjustment of the phase screens and the focal distances of digital lenses implemented in both SLMs. The proposed system can be completely automatized and all its elements are in fixed positions avoiding mechanical misalignment. Its design, propagation distance and atmospheric condition adjustment are provided. The setup performance is verified by numerical simulation of Gaussian beam propagation in the weak turbulence regime. The obtained parameters: scintillation index, beam wander and spreading are compared to their theoretical counterparts for different propagation distances and atmospheric conditions.
机译:天文学,远程光学传感和自由空间光通信等不同应用,在进行室外测试之前,都需要对通过湍流传播的光束进行数值和实验室实验仿真。尽管可以将旋转相板或热室应用于此类研究,但它们不允许改变大气条件和原位传播距离。相反,空间光调制器(SLM)是实验湍流模拟的灵活替代方案。在这项工作中,我们考虑一个包含两个SLM的实验装置,用于研究弱大气湍流中的激光束传播。通过调整两个SLM中实现的相位屏幕和数字透镜的焦距,可以适当地实现大气条件和传播距离的变化。所提出的系统可以完全自动化,并且其所有元素都位于固定位置,从而避免机械未对准。提供其设计,传播距离和大气条件调节。通过在弱湍流状态下高斯光束传播的数值模拟验证了设置性能。对于不同的传播距离和大气条件,将获得的参数:闪烁指数,束流漂移和扩展与理论对应物进行比较。

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