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首页> 外文期刊>The Astrophysical journal >Stellar Kinematics and Metallicities in the Leo I Dwarf Spheroidal Galaxy—Wide-Field Implications for Galactic Evolution
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Stellar Kinematics and Metallicities in the Leo I Dwarf Spheroidal Galaxy—Wide-Field Implications for Galactic Evolution

机译:狮子座I矮球状星系中的恒星运动学和金属性-对银河系演化的广域意义

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We present low-resolution spectroscopy of 120 red giants in the Galactic satellite dwarf spheroidal (dSph) Leo I, obtained with GeminiN GMOS and Keck DEIMOS. We find stars with velocities consistent with membership of Leo I out to 1.3 King tidal radii. By measuring accurate radial velocities with a median measurement error of 4.6 km s-1, we find a mean systemic velocity of 284.2 km s-1 with a global velocity dispersion of 9.9 km s-1. The dispersion profile is consistent with being flat out to the last data point. We show that a marginally significant rise in the radial dispersion profile at a radius of 3' is not associated with any real localized kinematical substructure. Given its large distance from the Galaxy, tides are not likely to have affected the velocity dispersion, a statement we support from a quantitative kinematical analysis, as we observationally reject the occurrence of a significant apparent rotational signal or an asymmetric velocity distribution. Mass determinations adopting both isotropic stellar velocity dispersions and more general models yield an M/L of 24, which is consistent with the presence of a significant dark halo with a mass of about 3 × 107 M☉, in which the luminous component is embedded. This suggests that Leo I exhibits dark matter properties similar to those of other dSphs in the Local Group. Our data allowed us also to determine metallicities for 58 of the targets. We find a mildly metal-poor mean of -1.31 dex and a full spread covering 1 dex. In contrast to the majority of dSphs, Leo I appears to show no radial gradient in its metallicities, which points to a negligible role of external influences in this galaxy's evolution.
机译:我们介绍了由GeminiN GMOS和Keck DEIMOS获得的银河卫星矮球体(dSph)Leo I中的120个红色巨人的低分辨率光谱。我们发现恒星的速度与狮子座I的成员一致,潮汐半径为1.3。通过以4.6 km s-1的中值测量误差测量准确的径向速度,我们发现系统平均速度为284.2 km s-1,整体速度色散为9.9 km s-1。色散分布与平坦到最后一个数据点一致。我们表明,在半径3'处的径向弥散分布略有上升,与任何实际的局部运动学子结构都不相关。鉴于其距银河系的距离较大,潮汐不太可能影响速度分散,我们从定量运动学分析中支持这一说法,因为我们观察到拒绝出现明显的视在旋转信号或不对称的速度分布。同时采用各向同性恒星速度色散和更通用的模型进行的质量测定得出的M / L为24,这与质量约为3×107M☉的显着暗晕存在有关,其中嵌入了发光成分。这表明狮子座I表现出的暗物质特性与本地组中其他dSph相似。我们的数据还使我们能够确定58个目标的金属性。我们发现弱金属的平均值为-1.31 dex,覆盖范围为1 dex。与大多数dSph相比,狮子座I似乎没有显示出径向上的金属梯度,这表明在银河系演化过程中外部影响的作用微不足道。

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