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Pupil plane imager for estimation of turbulence over long horizontal paths

机译:学生平面成像仪,用于估算长水平路径上的湍流

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摘要

A pupil plane imaging system, consisting of a camera and optics that image the entrance pupil of atelescope, measures scintillation induced by atmospheric turbulence. Algorithms are developed to estimate the distribution of turbulence from scintillation assuming the well known relationship between scintillation scale size and the range of turbulence layer. The algorithms were exercised using a 75 cm pupil within a 1 meter telescope located at North Oscura Peak in New Mexico, based on light from a source 52.6 km away. Estimates of the C_(n)~(2) profile over the path are derived using coarse range bins. From the C_(n)~(2) profile, an estimate of Fried's transverse coherence length was computed and compared with that from other sensors. The algorithm is tested in several ways. Error sources are discussed, including the intrinsic insensitivity of the technique to turbulence near the pupil.
机译:一个由照相机和光学元件组成的瞳孔平面成像系统可以对天文望远镜的入射瞳孔进行成像,它可以测量由大气湍流引起的闪烁。假设闪烁尺度大小和湍流层范围之间存在众所周知的关系,可以开发出一些算法来估计闪烁产生的湍流分布。该算法是使用位于新墨西哥州北奥斯库拉峰(North Oscura Peak)的1米望远镜中的75厘米瞳孔,基于52.6公里外的光源进行的。路径上的C_(n)〜(2)轮廓的估计值是使用粗范围区间得出的。根据C_(n)〜(2)轮廓,计算出弗里德横向相干长度的估计值,并将其与其他传感器的估计值进行比较。对该算法进行了多种测试。讨论了误差源,包括该技术对瞳孔附近湍流的固有不敏感性。

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