The dual nature of the tidal tails of NGC 5904 (M5)

Q1 Earth and Planetary Sciences
A. Piatti
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引用次数: 0

Abstract

The tangential velocity dispersion of stars belonging to the Milky Way globular cluster’s tidal tails has recently been found from N-body simulations to be a parameter that distinguishes between cored and cuspy profiles of low-mass dwarf galaxy dark matter subhaloes where that globular cluster formed, and the in-situ formation scenario. In this context, we discovered that M5’s tidal tails are composed by stars at two different metallicity regimes ([Fe/H] ∼ -1.4 dex and -2.0 dex). The more metal-rich tidal tail stars are of the same metal content than M5’s members and have a tangential velocity dispersion that coincides with the predicted value for a cuspy formation scenario (subhalo mass ∼ 109 M⊙). The more metal-poor stars, that are found along the entire M5 tidal tails and have similar distributions to their more metal-rich counterparts in the M5 colour-magnitude diagram and orbit trajectory, have a tangential velocity dispersion that refers to a cored subhalo (mass ∼ 109 M⊙) or an in-situ formation scenario. In order to reconcile the dual distribution of M5 tidal tail stars, in kinematics and chemistry, we propose that M5 collided with another more metal-poor and less massive globular cluster anytime before or after it was accreted into the Milky Way.
NGC 5904 (M5)潮尾的双重性质
最近,从n体模拟中发现,属于银河系球状星团潮汐尾的恒星的切向速度色散是区分球状星团形成的低质量矮星系暗物质亚晕的核心和cuspy剖面以及原位形成情景的参数。在这种情况下,我们发现M5的潮尾是由两种不同金属丰度([Fe/H] ~ -1.4指数和-2.0指数)的恒星组成的。更富金属的潮尾星与M5成员的金属含量相同,其切向速度色散与cuspy形成情景(亚晕质量~ 109 M⊙)的预测值一致。沿着整个M5潮汐尾发现的金属含量较低的恒星,其分布与M5彩色星等图和轨道轨迹中金属含量较高的恒星相似,其切向速度色散指的是核心亚晕(质量~ 109 M⊙)或现场形成场景。为了调和M5潮尾星的双重分布,在运动学和化学上,我们提出M5在被吸积到银河系之前或之后的任何时候都与另一个金属含量更低、质量更小的球状星团发生碰撞。
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来源期刊
Monthly Notices of the Royal Astronomical Society: Letters
Monthly Notices of the Royal Astronomical Society: Letters Earth and Planetary Sciences-Space and Planetary Science
CiteScore
8.80
自引率
0.00%
发文量
136
期刊介绍: For papers that merit urgent publication, MNRAS Letters, the online section of Monthly Notices of the Royal Astronomical Society, publishes short, topical and significant research in all fields of astronomy. Letters should be self-contained and describe the results of an original study whose rapid publication might be expected to have a significant influence on the subsequent development of research in the associated subject area. The 5-page limit must be respected. Authors are required to state their reasons for seeking publication in the form of a Letter when submitting their manuscript.
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