论文标题

H3调查中与银河系磁盘相关的古代非常贫穷的星星

Ancient Very Metal-Poor Stars Associated With the Galactic Disk in the H3 Survey

论文作者

Carter, Courtney, Conroy, Charlie, Zaritsky, Dennis, Ting, Yuan-Sen, Bonaca, Ana, Naidu, Rohan, Johnson, Benjamin, Cargile, Phillip, Caldwell, Nelson, Speagle, Josh, Han, Jiwon Jesse

论文摘要

古老的,非常贫穷的恒星为最早的星系组和组装时代提供了一个窗口。我们将来自H3光谱调查的数据和GAIA结合在一起,以测量482个非常金属贫困的样品(VMP; [Fe/H] $ <-2 $)的样品的金属,$α$元素,出色的年龄和轨道性质,以限制其起源。该样本仅限于$ 1 \ sillsim | z | \ Lessim3 $ kpc来自银河平面。我们发现,磁盘附近的VMP恒星中> 70%是在前轨道上的,这一部分朝着较低的金属性增加。如果金属贫困的恒星主要是从许多没有首选方向的小型系统中积聚的,则该结果出乎意料,因为这种情况将意味着主要是各向同性分布。此外,我们发现有一些证据表明[$α$/fe]的恒星中较高的前轨道轨道分数较高。主要序列关闭恒星基于异隆的年龄表明,这些VMP恒星均匀旧($ \ \ \ \ \ yout12 $ gyr),无论$α$丰度和金属性如何,这表明金属贫困人口并非来自同一混合良好的气盘。我们推测,VMP人口具有异质的起源,包括古代磁盘中的原位形成和从早期旋转方向的卫星中的积聚。我们对这些VMP恒星的精确测量的年龄在进步轨道上表明,在大多数宇宙时间内,银河系具有相对静止的融合历史,这意味着星系的角动量对齐至少为12 Gyr。

Ancient, very metal-poor stars offer a window into the earliest epochs of galaxy formation and assembly. We combine data from the H3 Spectroscopic Survey and Gaia to measure metallicities, abundances of $α$ elements, stellar ages, and orbital properties of a sample of 482 very metal-poor (VMP; [Fe/H]$<-2$) stars in order to constrain their origins. This sample is confined to $1\lesssim |Z| \lesssim3$ kpc from the Galactic plane. We find that >70% of VMP stars near the disk are on prograde orbits and this fraction increases toward lower metallicities. This result unexpected if metal-poor stars are predominantly accreted from many small systems with no preferred orientation, as such a scenario would imply a mostly isotropic distribution. Furthermore, we find there is some evidence for higher fractions of prograde orbits amongst stars with lower [$α$/Fe]. Isochrone-based ages for main sequence turn-off stars reveal that these VMP stars are uniformly old ($\approx12$ Gyr) irrespective of the $α$ abundance and metallicity, suggesting that the metal-poor population was not born from the same well-mixed gas disk. We speculate that the VMP population has a heterogeneous origin, including both in-situ formation in the ancient disk and accretion from a satellite with the same direction of rotation as the ancient disk at early times. Our precisely measured ages for these VMP stars on prograde orbits show that the Galaxy has had a relatively quiescent merging history over most of cosmic time, and implies the angular momentum alignment of the Galaxy has been in place for at least 12 Gyr.

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