论文标题

二进制和恒星旋转在NGC 2422的分裂主序列中的作用

The role of binarity and stellar rotation in the split main sequence of NGC 2422

论文作者

He, Chenyu, Sun, Weijia, Li, Chengyuan, Li, Lu, Shao, Zhengyi, Zhong, Jing, Chen, Li, de Grijs, Richard, Tang, Baitian, Qin, Songmei, Randriamanakoto, Zara

论文摘要

除了在年轻和中年(〜600 Myr-2 Gyr-gred)星形簇中广泛发现的扩展主要序列转口外,一些年轻的簇甚至显示出主序列(MSS)。提出了不同的恒星旋转速率来说明分叉的MS模式,分别由快速和缓慢旋转的恒星填充的红色和蓝色MSS(RMS和BMS)。使用Gaia早期数据版本3的光度法,我们报告了一个带有分叉的MS,NGC 2422(〜90 MYR)的银河开放群集。我们排除了分叉的MS模式是由光度噪声或差异变红引起的。我们旨在检查出色的旋转是否可以解释分裂MSS。我们使用加拿大 - 弗朗西·霍瓦伊望远镜和南部非洲大型望远镜观察到的光谱,并直接测量了预计的旋转速度的V Sin I,用于填充BMS和RMS的恒星。我们发现它们的v sin i值与它们的颜色标记图中的基因座弱相关,这是由于大量旋转速度低的RMS恒星引起的污染。基于光谱能量分布拟合方法,我们建议这些在RMS处缓慢旋转的恒星可能会隐藏二元伴侣,这打破了预期的V sin i-color相关性。未来的时间域研究重点是这些缓慢旋转的恒星是否是径向速度变量,对于测试恒星旋转和二进制在产生分裂MSS中的作用至关重要。

In addition to the extended main-sequence turnoffs widely found in young and intermediate-age (~ 600 Myr-2 Gyr-old) star clusters, some younger clusters even exhibit split main sequences (MSs). Different stellar rotation rates are proposed to account for the bifurcated MS pattern, with red and blue MSs (rMS and bMS) populated by fast and slowly rotating stars, respectively. Using photometry from Gaia Early Data Release 3, we report a Galactic open cluster with a bifurcated MS, NGC 2422 ( ~ 90 Myr). We exclude the possibilities that the bifurcated MS pattern is caused by photometric noise or differential reddening. We aim to examine if stellar rotation can account for the split MSs. We use spectra observed with the Canada-France-Hawaii Telescope and the Southern African Large Telescope, and directly measured v sin i, the projected rotational velocities, for stars populating the bMS and rMS. We find that their v sin i values are weakly correlated with their loci in the color-magnitude diagram because of contamination caused by a large fraction of rMS stars with low projected rotational velocities. Based on the spectral energy distribution fitting method, we suggest that these slowly rotating stars at the rMS may hide a binary companion, which breaks the expected v sin i-color correlation. Future time-domain studies focusing on whether these slowly rotating stars are radial velocity variables are crucial to test the roles of stellar rotation and binarity in generating the split MSs.

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