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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Fringe visibility estimation in Michelson stellar interferometry: asymptotic performances
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Fringe visibility estimation in Michelson stellar interferometry: asymptotic performances

机译:迈克尔逊恒星干涉中的边缘可见性估计:渐近性能

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This paper is devoted to the computation of a theoretical lower bound on the variance of the squared visibility amplitude, estimated by optical long-baseline Michelson interferometry with large apertures. A solution to this problem is to compute the Cramer–Rao lower bound. This derivation is tractable under the Gaussian distribution assumption. This requires the first and second order moment of the image itself, for which analytical expressions are obtained. The resulting lower bound is compared to the variance of the amplitude visibility estimator proposed by Mourard. This variance, computed by Berio for images recorded in the photon-counting mode, is derived herein for the classical CCD camera.
机译:本文致力于计算具有可见度的平方的方差的理论下限,该下限是通过大孔径的光学长基线迈克尔逊干涉法估算的。解决此问题的方法是计算Cramer-Rao下限。在高斯分布假设下,该推导是易处理的。这需要图像本身的一阶和二阶矩,为此需要获得解析表达式。将所得的下限与Mourard提出的幅度可见度估计器的方差进行比较。由Berio计算的以光子计数模式记录的图像的这种方差在此处是针对经典CCD相机得出的。

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