论文标题
Atari磁盘是银河系磁盘系统中的金属贫困恒星种群
The Atari Disk, a Metal-Poor Stellar Population in the Disk System of the Milky Way
论文作者
论文摘要
我们已经开发了一种化学动力学方法,将36,010个金属贫困的Skymapper星分配给各种银河恒星种群。使用两种独立的技术(速度和动作空间行为),$ GAIA $ EDR3星形法和光度法金属性,我们通过最大程度地减少规范厚的厚度磁盘或其他银河系结构的污染来选择具有“金属湿”厚磁盘种群特征的恒星。该样品包括7,127颗星,涵盖了$ -3.50 <$ {\ Metal}〜$ <-0.8 $的金属范围,并且具有$ \ langle v_ccation的系统旋转速度,v_ v_D = 154 $ \ rangle = 154 $ \,,km \,km \,s $^{ - 1} $ lags lags and the lags and the lagks。轨道偏心率在典型的厚磁盘和光环值之间具有中间值。比例长度为$ h_ {r} = 2.48^{+0.05} _ { - 0.05} $ \,kpc,刻度高度为$ h_ {z {z {z {z {z {+0.19} _ { - 0.19} _ { - 0.15} $ \,kpc。金属分布函数非常适合指数,其斜率为$δ\ log {\ rm n}/Δ\ metal = 1.1.13 \ pm0.06$。总体而言,我们发现了一个重要的金属贫困组件,该组件由261个Skymapper恒星组成,其中\ Metal $ <-2.0 $。虽然我们的样品仅包含{\ Metal}〜$ \ Lesssim-3.0 $的11颗恒星,但研究了金属贫困星的Jinabase汇编,揭示了另一个这样的恒星(5个具有{\ Metal} $ <-4.0 $)的恒星在我们的样品上属于我们的样品。这些独特的空间,运动学和化学特性强烈表明这种金属贫困的,相结合的运动学样品代表具有吸积起源的独立磁盘成分,其中一个大型矮人的星系径向散落到早期的银河系磁盘中。展望未来,我们建议将金属湿的磁盘种群称为Atari磁盘,鉴于其可能的积聚起源,并且参考其与银河系薄磁盘共享空间。
We have developed a chemo-dynamical approach to assign 36,010 metal-poor SkyMapper stars to various Galactic stellar populations. Using two independent techniques (velocity and action space behavior), $Gaia$ EDR3 astrometry, and photometric metallicities, we selected stars with the characteristics of the "metal-weak" thick disk population by minimizing contamination by the canonical thick disk or other Galactic structures. This sample comprises 7,127 stars, spans a metallicity range of $-3.50<${\metal}~$<-0.8$, and has a systematic rotational velocity of $\langle V_ϕ\rangle=154$\,km\,s$^{-1}$ that lags that of the thick disk. Orbital eccentricities have intermediate values between typical thick disk and halo values. The scale length is $h_{R}=2.48^{+0.05}_{-0.05}$\,kpc and the scale height is $h_{Z}=1.68^{+0.19}_{-0.15}$\,kpc. The metallicity distribution function is well fit by an exponential with a slope of $Δ\log{\rm N}/Δ\metal=1.13\pm0.06$. Overall, we find a significant metal-poor component consisting of 261 SkyMapper stars with \metal$<-2.0$. While our sample contains only eleven stars with {\metal}~$\lesssim-3.0$, investigating the JINAbase compilation of metal-poor stars reveals another 18 such stars (five have {\metal}$<-4.0$) that kinematically belong to our sample. These distinct spatial, kinematic and chemical characteristics strongly suggest this metal-poor, phase-mixed kinematic sample to represent an independent disk component with an accretion origin in which a massive dwarf galaxy radially plunged into the early Galactic disk. Going forward, we propose to call the metal-weak thick disk population as the Atari disk, given its likely accretion origin, and in reference to it sharing space with the Galactic thin and thick disks.