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Deep Horizontal Atmospheric Turbulence Modeling with a Liquid Crystal Spatial Light Modulator

机译:用液晶空间光调制器进行深水平大气湍流建模

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摘要

We investigate the performance of a Liquid Crystal (LC) Spatial Light Modulator (SLM) as an optical device for generating high intensity atmospheric turbulence in the laboratory. The experimental setup represents long range horizontal beam propagation at a low altitude where the conditions of atmospheric turbulence can be most severe. WaveProp is a software package written by the Optical Sciences Company (tOSC) which is used for simulating electro-magnetic field propagation through equally spaced phase screens. This simulation tool provides the cumulative amplitude and phase modulation input signals to a single LC SLM. An SLM is configured at the Naval Postgraduate School (NPS) Adaptive Optics Center of Excellence to modulate both amplitude and phase simultaneously. The SLM reproduces large amplitude fluctuation with branch points and branch forks from the deep turbulence models. Deep horizontal path laser propagation reported herein is modeled and simulated in the NPS laboratory to provide realistic optical disturbances for an adaptive optics wavefront correction system.
机译:我们在实验室中研究液晶(LC)空间光调制器(SLM)作为用于生成高强度大气湍流的光学设备的性能。实验装置代表了在低海拔地区的远距离水平光束传播,在低海拔地区,大气湍流的条件可能最为严重。 WaveProp是由光学科学公司(tOSC)编写的软件包,用于模拟电磁波在等距相屏中的传播。该仿真工具将累积的幅度和相位调制输入信号提供给单个LC SLM。海军研究生院(NPS)自适应光学卓越中心配置了SLM,以同时调制振幅和相位。 SLM通过深度湍流模型利用分支点和分支叉产生较大的幅度波动。本文报道的深水平路径激光传播在NPS实验室中进行了建模和仿真,以为自适应光学波前校正系统提供现实的光学干扰。

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