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Two stellar components in the halo of the Milky Way

机译:银河系光环中的两个恒星成分

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The halo of the Milky Way provides unique elemental abundance and kinematic information on the first objects to form in the Universe, and this information can be used to tightly constrain models of galaxy formation and evolution. Although the halo was once considered a single component, evidence for its dichotomy has slowly emerged in recent years from inspection of small samples of halo objects. Here we show that the halo is indeed clearly divisible into two broadly overlapping structural components—an inner and an outer halo—that exhibit different spatial density profiles, stellar orbits and stellar metallicities (abundances of elements heavier than helium). The inner halo has a modest net prograde rotation, whereas the outer halo exhibits a net retrograde rotation and a peak metallicity one-third that of the inner halo. These properties indicate that the individual halo components probably formed in fundamentally different ways, through successive dissipational (inner) and dissipationless (outer) mergers and tidal disruption of proto-Galactic clumps.
机译:银河系的光晕提供了关于宇宙中形成的第一个物体的独特元素丰度和运动学信息,并且该信息可用于严格约束星系形成和演化的模型。尽管光晕曾经被认为是一个单独的组成部分,但近年来通过对少量光晕物体进行检查,其二分法的证据逐渐出现。在这里,我们显示出,晕圈确实可以清晰地分为两个大致重叠的结构部分(内部晕圈和外部晕圈),它们显示出不同的空间密度分布,恒星轨道和恒星金属性(元素含量比氦重)。内部光晕具有适度的净前向旋转,而外部光晕则呈现净逆行旋转,并且峰值金属性为内部光晕的三分之一。这些特性表明,各个晕圈成分可能通过连续的消散(内部)和无消散(外部)合并以及潮汐对原银河系团的破坏而以根本不同的方式形成。

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