论文标题

对最遥远的分类群集的分析 - 使用Gaia EDR3和$ \ texttt {asteca} $重新评估基本参数

An analysis of the most distant catalogued open clusters -- Re-assessing fundamental parameters with Gaia EDR3 and $\texttt{ASteCA}$

论文作者

Perren, G. I., Pera, M. S., Navone, H. D., Vázquez, R. A.

论文摘要

在过去的几年中,已经提出了一些研究,并应用了某种数据处理数据以估计开放群集的基本参数。这些参数后来在大规模分析中使用,例如银河系螺旋臂的结构。距离是估计更直接的参数之一,但在已发布的数据中仍然可以找到巨大的差异。对于位于多个KPC的开放式群集而言,尤其如此。我们交叉匹配了几个已发布的目录,并选择了二十五个最遥远的开放式群集($> $ 9000 PC)。然后,我们对它们的基本参数进行了详细的分析,重点是它们的距离,以确定目录和我们的估计值之间的一致性。} gaia EDR3调查的光度和星体数据被采用。数据是使用我们自己的会员分析代码(PYUPMASK)处理的,我们的包装包用于自动基本群集的参数估计($ \ texttt {asteca} $)。我们发现,即使是显示出$ \ texttt {asteca} $ values的目录,我们发现结果与被分类的结果之间的估计距离差异。对于年龄估计,也发现很大的差异。作为分析的副产品,我们发现VD Bergh-Hagen 176可能是开放群集,迄今为止最大的中心距离分类。因此,强烈建议使用开放群集的分类参数来推断银河系的大规模特性,尤其是对于位于多个kpc的人来说。

Several studies have been presented in the last few years applying some kind of automatic processing of data to estimate the fundamental parameters of open clusters. These parameters are later on employed in larger scale analyses, for example the structure of the Galaxy's spiral arms. The distance is one of the more straightforward parameters to estimate, yet enormous differences can still be found among published data. This is particularly true for open clusters located more than a few kpc away. We cross-matched several published catalogues and selected the twenty-five most distant open clusters ($>$9000 pc). We then performed a detailed analysis of their fundamental parameters, with emphasis on their distances, to determine the agreement between catalogues and our estimates.} Photometric and astrometric data from the Gaia EDR3 survey was employed. The data was processed with our own membership analysis code (pyUPMASK), and our package for automatic fundamental cluster's parameters estimation ($\texttt{ASteCA}$). We find differences in the estimated distances of up to several kpc between our results and those catalogued, even for the catalogues that show the best matches with $\texttt{ASteCA}$ values. Large differences are also found for the age estimates. As a by-product of the analysis we find that vd Bergh-Hagen 176 could be the open cluster with the largest heliocentric distance catalogued to date. Caution is thus strongly recommended when using catalogued parameters of open clusters to infer large-scale properties of the Galaxy, particularly for those located more than a few kpc away.

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