论文标题
M31东北架子的红色巨型分支星星的运动学和金属性
Kinematics and Metallicity of Red Giant Branch Stars in the Northeast Shelf of M31
论文作者
论文摘要
我们在4个光谱田中获得了556个个人红色巨型分支星星的Keck/Deimos光谱,跨越了M31的东北(NE)架子的$ 13-31 $ $ 13-31 $。我们在投影以M31中为中心的径向距离与此功能的视线速度的空间中首次检测到完整的楔形图案,其中包括架子的返回流组件。这种楔形模式与在径向合并中形成的潮汐壳的期望相符,并提供了有力的证据,以预测巨型恒星流(GSS)形成模型,其中NE架子源自潮汐碎片的第二轨道包裹。观察到的NE,West(W)和东南(SE)架子的同心楔形模式独立于模型证实了这一解释。我们没有检测到与完整的祖细胞核心相对应的NE架子区域中的运动学特征,这有利于GSS形成模型,其中祖细胞完全破坏了。架子的光度金属性分布意味着它由潮汐材料主导,而不是相结合的恒星晕或磁盘。金属分布([Fe/h] $ _ {\ rm Phot} $ = $ -0.42 $ $ \ pm $ $ 0.01 $)也与GSS匹配,因此W和SE货架,进一步支持了潮汐功能之间的直接物理结合。
We obtained Keck/DEIMOS spectra of 556 individual red giant branch stars in 4 spectroscopic fields spanning $13-31$ projected kpc along the Northeast (NE) shelf of M31. We present the first detection of a complete wedge pattern in the space of projected M31-centric radial distance versus line-of-sight velocity for this feature, which includes the returning stream component of the shelf. This wedge pattern agrees with expectations of a tidal shell formed in a radial merger and provides strong evidence in favor of predictions of Giant Stellar Stream (GSS) formation models in which the NE shelf originates from the second orbital wrap of the tidal debris. The observed concentric wedge patterns of the NE, West (W), and Southeast (SE) shelves corroborate this interpretation independently of the models. We do not detect a kinematical signature in the NE shelf region corresponding to an intact progenitor core, favoring GSS formation models in which the progenitor is completely disrupted. The shelf's photometric metallicity distribution implies that it is dominated by tidal material, as opposed to the phase-mixed stellar halo or the disk. The metallicity distribution ([Fe/H]$_{\rm phot}$ = $-0.42$ $\pm$ $0.01$) also matches the GSS, and consequently the W and SE shelves, further supporting a direct physical association between the tidal features.