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A 2MASS All-Sky View of the Sagittarius Dwarf Galaxy. V. Variation of the Metallicity Distribution Function along the Sagittarius Stream

机译:射手座矮星系的2MASS全天空视图。 V.沿着射手座流的金属分布函数的变化

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摘要

We present reliable measurements of the metallicity distribution function (MDF) at different points along the tidal stream of the Sagittarius (Sgr) dwarf spheroidal (dSph) galaxy, based on high-resolution, echelle spectroscopy of candidate M giant members of the Sgr system. The Sgr MDF is found to evolve significantly from a median [Fe/H] ~ -0.4 in the core to ~-1.1 dex over a Sgr leading arm length representing ~2.5-3.0 Gyr of dynamical (i.e., tidal stripping) age. This is direct evidence that there can be significant chemical differences between current dSph satellites and the bulk of the stars they have contributed to the halo. Our results suggest that Sgr experienced a significant change in binding energy over the past several gigayears, which has substantially decreased its tidal boundary across a radial range over which there must have been a significant metallicity gradient in the progenitor galaxy. By accounting for MDF variation along the debris arms, we approximate the MDF Sgr would have had several gigayears ago. We also analyze the MDF of a moving group of M giants we previously discovered toward the north Galactic cap. These objects have the opposite radial velocities to the infalling Sgr leading arm stars there, and we propose that most of them represent Sgr trailing arm stars overlapping the Sgr leading arm in this part of the sky. If so, these trailing arm stars further demonstrate the strong MDF evolution within the Sgr stream.ud
机译:我们基于Sgr系统候选M巨型成员的高分辨率阶梯光谱,介绍了射手座(Sgr)矮球体(dSph)星系潮汐流不同点的金属分布函数(MDF)的可靠测量。发现Sgr MDF在代表动态年龄(即潮汐剥离)的〜2.5-3.0 Gyr的Sgr前臂长度上,从核心的中位数[Fe / H]〜-0.4显着演变为〜-1.1 dex。这直接证明当前的dSph卫星与它们促成光晕的大部分恒星之间可能存在明显的化学差异。我们的结果表明,Sgr在过去的数年中经历了结合能的显着变化,这在径向星系范围内已大大降低了其潮汐边界,在该范围内,祖先星系中必须存在显着的金属性梯度。通过考虑沿碎片臂的中密度纤维板变化,我们可以估算中密度纤维板Sgr在数千兆年前就已经存在。我们还分析了先前在北银河盖附近发现的一群M巨人的移动的MDF。这些天体与下落的Sgr前臂星具有相反的径向速度,我们建议其中大多数代表Sgr后臂星与Sgr前臂在天空的这一部分重叠。如果是这样的话,这些后臂星将进一步证明Sgr流中MDF的强大演化。

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