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Phase-correction of turbulent distortions of an optical wave propagating under conditions of strong intensity fluctuations

机译:在强强度起伏条件下传播的光波湍流畸变的相位校正

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摘要

Phase correction of a plane wave and a spatiolimited beam propagating through a turbulent layer of atmosphere were considered. The required adaptive corrector element size and the system bandwidth were found by numerical simulation. These requirements were determined to be the same as for a weak-intensity scintillation approximation. The size of the required segmented mirror element was found to be equal to Fried length r_(0), whereas the tolerable time lag was r_(0)/V, where V is the wind velocity. However, the local slope sensors then became impractical, as did tip-tilt correction over the corrector subapertures.
机译:考虑了平面波和在大气湍流层中传播的空间限制光束的相位校正。通过数值仿真发现了所需的自适应校正器元件尺寸和系统带宽。确定这些要求与弱强度闪烁近似的要求相同。发现所需的分段镜元件的大小等于弗里德长度r_(0),而可忍受的时滞为r_(0)/ V,其中V是风速。但是,局部斜率传感器变得不切实际,校正器子孔径上的倾斜倾斜校正也变得不切实际。

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