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Evaluation of the performance of a shearing interferometer in strong scintillation in the absence of additive measurement noise

机译:在没有附加测量噪声的情况下评估剪切干涉仪在强闪烁下的性能

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摘要

A simulation study is presented that evaluates the ability of a unit-shear, shearing interferometer to estimate a complex field resulting from propagation through extended turbulence. Performance is defined in terms of the Strehl ratio achieved when the estimate of the complex field obtained from reconstruction is used to correct the distorted wave front presented to the wave-front sensor. A series of evaluations is performed to identify the strengths and weaknesses of the shearing interferometer in the two-dimensional space of the Fried parameter r(0) and the Rytov number. The performance of the shearing interferometer is compared with that of a Hartmann sensor in the Fried and Hutchin geometries. Although the effects of additive measurement noise (such as read noise, shot noise, amplifier noise) are neglected, the fundamental characteristics of the measurement process are shown to distinguish the performance of the various wave-front sensors. It is found that the performance of a shearing interferometer is superior to that of a Hartmann sensor when the Rytov number exceeds 0.2. (C) 2002 Optical Society of America. [References: 11]
机译:提出了一个模拟研究,该研究评估了单位剪切剪切干涉仪评估通过扩展湍流传播而产生的复杂场的能力。当将通过重建获得的复数域的估计值用于校正呈现给波前传感器的失真波前时,根据所获得的斯特列尔比来定义性能。进行了一系列评估,以确定Fried参数r(0)和Rytov数的二维空间中的剪切干涉仪的优缺点。在Fried和Hutchin几何结构中,将剪切干涉仪的性能与Hartmann传感器的性能进行了比较。尽管忽略了附加测量噪声(例如读取噪声,散粒噪声,放大器噪声)的影响,但显示了测量过程的基本特征以区分各种波前传感器的性能。发现当Rytov值超过0.2时,剪切干涉仪的性能优于Hartmann传感器。 (C)2002年美国眼镜学会。 [参考:11]

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