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首页> 外文期刊>Astronomy and astrophysics >Gaia eclipsing binary and multiple systems - Two-Gaussian models applied to OGLE-III eclipsing binary light curves in the Large Magellanic Cloud
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Gaia eclipsing binary and multiple systems - Two-Gaussian models applied to OGLE-III eclipsing binary light curves in the Large Magellanic Cloud

机译:Gaia遮盖二进制和多系统-两个高斯模型应用于麦哲伦星云中OGLE-III遮盖二进制光曲线

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摘要

Context. The advent of large scale multi-epoch surveys raises the need for automated light curve (LC) processing. This is particularly true for eclipsing binaries (EBs), which form one of the most populated types of variable objects. The Gaia mission, launched at the end of 2013, is expected to detect of the order of few million EBs over a five-year mission. Aims. We present an automated procedure to characterize EBs based on the geometric morphology of their LCs with two aims: first to study an ensemble of EBs on a statistical ground without the need to model the binary system, and second to enable the automated identification of EBs that display atypical LCs. Methods. We modeled the folded LC geometry of EBs using up to two Gaussian functions for the eclipses and a cosine function for any ellipsoidal-like variability that may be present between the eclipses. The procedure is applied to the OGLE-III data set of EBs in the Large Magellanic Cloud (LMC) as a proof of concept. The Bayesian information criterion is used to select the best model among models containing various combinations of those components, as well as to estimate the significance of the components. Results. Based on the two-Gaussian models, EBs with atypical LC geometries are successfully identified in two diagrams, using the Abbe values of the original and residual folded LCs, and the reduced χ ~(2) . Cleaning the data set from the atypical cases and further filtering out LCs that contain non-significant eclipse candidates, the ensemble of EBs can be studied on a statistical ground using the two-Gaussian model parameters. For illustrative purposes, we present the distribution of projected eccentricities as a function of orbital period for the OGLE-III set of EBs in the LMC, as well as the distribution of their primary versus secondary eclipse widths.
机译:上下文。大规模多时间测量的出现提出了对自动光曲线(LC)处理的需求。对于蚀二进制(EB)来说尤其如此,后者构成了变量对象中人口最多的一种。盖亚任务于2013年底启动,预计将在五年任务中检测到几百万个EB。目的我们提出了一种基于其LC的几何形态来表征EB的自动化程序,其目的是:首先在统计基础上研究EB的集合,而无需对二进制系统进行建模;其次,能够自动识别具有以下特征的EB:显示非典型的LC。方法。我们对日食使用多达两个高斯函数,并对日食之间可能存在的任何类似椭球的变异性,使用余弦函数对EB的折叠LC几何模型进行建模。该程序应用于大麦哲伦星云(LMC)中EB的OGLE-III数据集,作为概念证明。贝叶斯信息准则用于在包含那些组件的各种组合的模型中选择最佳模型,以及估计组件的重要性。结果。基于双高斯模型,使用原始折叠LC和残留折叠LC的阿贝值以及减小的χ〜(2)在两张图中成功地识别出具有非典型LC几何形状的EB。从非典型案例中清除数据集并进一步过滤掉包含非重要日食候选对象的LC,可以使用两个高斯模型参数在统计基础上研究EB的集合。为了说明的目的,我们介绍了LMC中OGLE-III EB的预计偏心率的分布与轨道周期的关系,以及它们的一次和二次日食宽度的分布。

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