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'Lucky imaging' and speckle discrimination for the detection of faintcompanions with adaptive optics

机译:``幸运成像''和斑点识别功能,可通过自适应光学元件检测昏厥

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We have analyzed the application of frame selection ("lucky imaging") to adaptive optics (AO), short-exposure observations of faint companions. We have used the instantaneous Strehl ratio as an image quality metric. The probability density function (PDF) of this quantity can be used to determine the outcome of frame selection in terms of optimizing the Strehl ratio and the peak-signal-to-noise-ratio of the shift-and-add image. In the presence of static speckles, frame selection can lead to both: improvement in resolution - as quantified by the Strehl ratio, as well as faint signal detectability - given by the peak-signal-to-noise-ratio. This theoretical prediction is confirmed with real data from AO observations using Lick Observatory's 3m Shane telescope, and the Palomar Observatory's 5m Hale telescope. In addition, we propose a novel statistics-based technique for the detection of faint companions from a sequence of AO-corrected exposures. The algorithm, which we call stochastic speckle discrimination, utilizes the "statistical signature" of the centre of the point spread function (PSF) to discriminate between faint companions and static speckles. The technique yields excellent results even for signals invisible in the shift-and-add images.
机译:我们已经分析了帧选择(“幸运成像”)在自适应光学系统(AO)中的应用,即对昏暗伴侣的短时曝光观察。我们将瞬时斯特列尔比用作图像质量指标。此数量的概率密度函数(PDF)可用于根据优化Strehl比率和移相加图像的峰值信噪比来确定帧选择的结果。在存在静态斑点的情况下,帧选择可能导致以下两个方面:分辨率的改善(由Strehl比率量化)以及微弱的信号可检测性(由峰值信号与噪声之比给出)。使用Lick天文台的3m Shane望远镜和Palomar天文台的5m Hale望远镜从AO观测得到的真实数据证实了这一理论预测。此外,我们提出了一种基于统计的新颖技术,用于从一系列AO校正的曝光中检测微弱的同伴。该算法称为随机斑点识别,它利用点扩展函数(PSF)中心的“统计签名”来区分模糊伴随和静态斑点。即使对于移位和相加图像中不可见的信号,该技术也能产生出色的结果。

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