论文标题

完善上天蝎座与盖亚的人口普查

Refining the Census of the Upper Scorpius Association with Gaia

论文作者

Luhman, K. L., Esplin, T. L.

论文摘要

我们已经通过1)更新以前调查中的候选成员的选择,包括在上面的SCO关联中(〜10 Myr,〜145 PC)在上面的SCO协会(〜10 Myr,〜145 PC)中的普查,以包括第二个数据释放的高度精确天文测量,2)与几百个候选成员的范围进行测量和验证年轻人的贵族,并验证其年轻人和3级成员的级别(2),并评估其年轻人和3级成员,并与年轻人进行了验证(3)。 SCO在这项工作和以前的研究中显示了青年的证据。我们到达了1761个物体的目录,这些目录被采用为上部SCO的成员。被采用成员之间光谱类型的分布与附近其他恒星形成区域的分布相似,表明初始质量功能相似。在先前的研究中,我们为上sco成员的Wise和Spitzer空间望远镜编辑了中红外的光度法,并使用这些数据来识别显示出偶然磁盘证据的恒星。我们为我们的新成员目录提供了相同的分析。与较早的工作一样,我们发现,磁盘成员的比例随着恒星质量的较低而增加,范围从<= 10%> 1 msun到〜22%到0.01-0.3 msun的〜22%。最后,我们使用M(G_RP)中的低质量恒星的序列与G_BP-G_RP估计了上SCO和其他年轻关联的相对年龄。该比较表明,根据非磁性和磁进化模型,上的SCO是比Beta PIC关联(21-24 MYR)小的两个因素。

We have refined the census of stars and brown dwarfs in the Upper Sco association (~10 Myr, ~145 pc) by 1) updating the selection of candidate members from our previous survey to include the high-precision astrometry from the second data release of Gaia, 2) obtaining spectra of a few hundred candidate members to measure their spectral types and verify their youth, and 3) assessing the membership (largely with Gaia astrometry) of 2020 stars toward Upper Sco that show evidence of youth in this work and previous studies. We arrive at a catalog of 1761 objects that are adopted as members of Upper Sco. The distribution of spectral types among the adopted members is similar to those in other nearby star-forming regions, indicating a similar initial mass function. In previous studies, we have compiled mid-infrared photometry from WISE and the Spitzer Space Telescope for members of Upper Sco and used those data to identify the stars that show evidence of circumstellar disks; we present the same analysis for our new catalog of members. As in earlier work, we find that the fraction of members with disks increases with lower stellar masses, ranging from <=10% for >1 Msun to ~22% for 0.01-0.3 Msun. Finally, we have estimated the relative ages of Upper Sco and other young associations using their sequences of low-mass stars in M(G_RP) versus G_BP-G_RP. This comparison indicates that Upper Sco is a factor of two younger than the beta Pic association (21-24 Myr) according to both non-magnetic and magnetic evolutionary models.

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