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Measurement of seeing and the atmospheric time constant by differential scintillations

机译:通过微分闪烁测量视线和大气时间常数

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A simple differential analysis of stellar scintillations measured simultaneously with two apertures opens the possibility to estimate seeing. Moreover, some information on the vertical turbulence distribution can be obtained. A general expression for the differential scintillation index for apertures of arbitrary shape and for finite exposure time is derived, and its applications are studied. Correction for exposure time bias by use of the ratio of scintillation indices with and without time binning is studied. A bandpass-filtered scintillation in a small aperture (computed as the differential-exposure index) provides a reasonably good estimate of the atmospheric time constant for adaptive optics. (C) 2002 Optical Society of America. [References: 13]
机译:通过两个孔同时测量的恒星闪烁的简单差分分析为估计视线提供了可能性。此外,可以获得有关垂直湍流分布的一些信息。推导了任意形状的孔径和有限的曝光时间的微分闪烁指数的一般表达式,并对其应用进行了研究。研究了在有和没有时间分级的情况下,通过使用闪烁指数的比率来校正曝光时间偏差。在小孔径(经计算为微分曝光指数)中进行带通滤波的闪烁可为自适应光学提供合理的大气时间常数估算值。 (C)2002年美国眼镜学会。 [参考:13]

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