论文标题
基于晚期黯然失色的二进制恒星的准确性,对小麦芽云的距离确定高于2%
A distance determination to the Small Magellanic Cloud with an accuracy of better than 2 percent based on late-type eclipsing binary stars
论文作者
论文摘要
我们提出了一项新的研究,该研究是针对小麦芽云(SMC)中的二进制恒星的新研究,目的是改善对这个重要星系的距离确定。已经分析了10个新的,双层脱落的新型黯然失色的二进制文件,从OGLE变量恒星目录中缩成,并由F-和G-Type巨型组件组成。单个组件的绝对物理参数的典型准确性大于3%。除一种系统外,所有系统都由年轻和中间的人口恒星组成,其质量在1.4至3.8 m_sun范围内。 这个新样本与我们团队先前出版的五个SMC黯然失色的二进制文件结合在一起。使用表面亮度 - 颜色校准计算到二进制系统的距离。目标形成一个细长的结构,高度倾向于天空的平面。最近和最遥远的系统之间的距离差为10 kpc,视线深度达到7 kpc。我们发现,SMC中存在球形恒星次级结构(核心)与其恒星中心的暂定证据,其中约有40%的银河系中年轻和中级恒星。该子结构的径向扩展为〜1.5 kpc。我们得出了与D_SMC = 62.44 +/- 0.47(stat。)+/- 0.81(Syst。)KPC相对应的距离模量(M-M)_smc = 18.977 +/- 0.016 +/- 0.016 +/- 0.028 mag的距离,代表比2%的精度更好。
We present a new study of late-type eclipsing binary stars in the Small Magellanic Cloud (SMC) undertaken with the aim of improving the distance determination to this important galaxy. A sample of 10 new detached, double-lined eclipsing binaries indentified from the OGLE variable star catalogues and consisting of F- and G-type giant components has been analysed. The absolute physical parameters of the individual components have been measured with a typical accuracy of better than 3%. All but one of the systems consist of young and intermediate population stars with masses in the range of 1.4 to 3.8 M_Sun. This new sample has been combined with five SMC eclipsing binaries previously published by our team. Distances to the binary systems were calculated using a surface brightness - color calibration. The targets form an elongated structure, highly inclined to the plane of the sky. The distance difference between the nearest and most-distant system amounts to 10 kpc with the line of sight depth reaching 7 kpc. We find tentative evidence of the existence of a spherical stellar sub-structure (core) in the SMC coinciding with its stellar center, containing about 40% of the young and intermediate age stars in the galaxy. The radial extension of this sub-structure is ~1.5 kpc. We derive a distance to the SMC center of D_SMC=62.44 +/- 0.47 (stat.) +/- 0.81 (syst.) kpc corresponding to a distance modulus (m-M)_SMC=18.977 +/- 0.016 +/- 0.028 mag, representing an accuracy of better than 2%.