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首页> 外文期刊>The astronomical journal >Estimating Distance from Parallaxes. IV. Distances to 1.33 Billion Stars in Gaia Data Release 2
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Estimating Distance from Parallaxes. IV. Distances to 1.33 Billion Stars in Gaia Data Release 2

机译:估计距视差的距离。 IV。盖亚数据发布2中距13.3亿颗恒星的距离

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摘要

For the vast majority of stars in the second Gaia data release, reliable distances cannot be obtained by inverting the parallax. A correct inference procedure must instead be used to account for the nonlinearity of the transformation and the asymmetry of the resulting probability distribution. Here, we infer distances to essentially all 1.33 billion stars with parallaxes published in the second Gaia data release. This is done using a weak distance prior that varies smoothly as a function of Galactic longitude and latitude according to a Galaxy model. The irreducible uncertainty in the distance estimate is characterized by the lower and upper bounds of an asymmetric confidence interval. Although more precise distances can be estimated for a subset of the stars using additional data (such as photometry), our goal is to provide purely geometric distance estimates, independent of assumptions about the physical properties of, or interstellar extinction toward, individual stars. We analyze the characteristics of the catalog and validate it using clusters. The catalog can be queried using ADQL at http://gaia.ari.uni-heidelberg.de/tap.html (which also hosts the Gaia catalog) and downloaded from http://www.mpia.de/~calj/gdr2_distances.html.
机译:对于第二次盖亚数据发布中的绝大多数恒星,无法通过反转视差获得可靠的距离。取而代之的是,必须使用正确的推理程序来说明转换的非线性和所得概率分布的不对称性。在这里,我们用第二个Gaia数据版本中发布的视差推断出基本上所有13.3亿颗恒星的距离。这是通过使用较弱的距离完成的,该距离根据银河系模型随银河经度和纬度的变化而平稳变化。距离估计中不可减少的不确定性的特征在于不对称置信区间的上下限。尽管可以使用其他数据(例如光度法)为一小组恒星估算更精确的距离,但我们的目标是提供纯粹的几何距离估算,而与对单个恒星的物理特性或星际灭绝的假设无关。我们分析目录的特征,并使用聚类对其进行验证。可以使用ADQL在http://gaia.ari.uni-heidelberg.de/tap.html(也托管Gaia目录)上查询该目录,并可以从http://www.mpia.de/~calj/gdr2_distances下载.html。

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