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首页> 外文期刊>The Astrophysical journal >THE STRUCTURE AND THE DISTANCE OF COLLINDER 121 FROM HIPPARCOS AND PHOTOMETRY: RESOLVING THE DISCREPANCY
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THE STRUCTURE AND THE DISTANCE OF COLLINDER 121 FROM HIPPARCOS AND PHOTOMETRY: RESOLVING THE DISCREPANCY

机译:Hipparcos和光度法中收集器121的结构和距离:解决差异

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We present further arguments that the Hipparcos parallaxes for some of the clusters and associations represented in the Hipparcos catalog should be used with caution in the study of the Galactic structure. It has already been shown that the discrepancy between the Hipparcos and ground-based parallaxes for several clusters including the Pleiades, Coma Ber, and NGC 6231 can be resolved by recomputing the Hipparcos astrometric solutions with an improved algorithm diminishing correlated errors in the attitude parameters. Here we present new parallaxes obtained with this algorithm for another group of stars with discrepant data-the galactic cluster Cr 121. The original Hipparcos parallaxes led de Zeeuw et al. to conclude that Cr 121 and the surrounding association of OB stars form a relatively compact and coherent moving group at a distance of approx= 550-600 pc. Our corrected parallaxes reveal a different spatial distribution of young stellar populace in this area. Both the cluster Cr 121 and the extended OB association are considerably more distant (750-1000 pc), and the latter has a large depth probably extending beyond 1 kpc. Therefore, not only are the recalculated parallaxes in complete agreement with the photometric uvbyβ parallaxes, but the structure of the field they reveal is no longer in discrepancy with that found by the photometric method.
机译:我们提出了进一步的论点,即在研究银河结构时应谨慎使用Hipparcos目录中表示的某些星团和关联的Hipparcos视差。业已表明,通过重新计算Hipparcos天文解决方案并使用改进的算法来减少姿态参数中的相关误差,可以解决Hipparcos和地面星视差之间的几个星团(包括le宿星,彗星和NGC 6231)之间的差异。在这里,我们介绍了用这种算法获得的另一组具有不同数据的恒星的新视差-银河星团Cr121。原始的Hipparcos视差由de Zeeuw等人提出。可以得出结论,Cr 121和OB星周围的缔合在大约550-600 pc的距离处形成了一个相对紧凑和连贯的运动团。我们校正的视差揭示了该地区年轻恒星种群的不同空间分布。团簇Cr 121和扩展的OB关联都相距更远(750-1000 pc),后者的深度很大,可能超过1 kpc。因此,不仅重新计算的视差与测光的uvbyβ视差完全一致,而且它们揭示的场结构不再与通过测光方法发现的视差相符。

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