论文标题

Typhon恒星流的化学丰度

Chemical Abundances of the Typhon Stellar Stream

论文作者

Ji, Alexander P., Naidu, Rohan P., Brauer, Kaley, Ting, Yuan-Sen, Simon, Joshua D.

论文摘要

我们介绍了最近发现的高能溪流Typhon中的第一个高分辨率化学丰度。 Typhon恒星的启示剂> 100 kpc,这使这是银河系非常遥远的恒星光环的第一张详细化学图片。尽管样本量有限,但我们发现Typhon的化学丰度更像是矮星系,而不是球状簇,显示出金属性分散体,没有多个恒星种群。 Typhon恒星显示出增强的$α$元素丰度,并随着金属性的增加而增加R-Process丰度。高$α$的丰度暗示了Typhon的短星形成持续时间,但这与对遥远的银河系光环的预期和存在延迟的R-Process富集的期望不一致。如果Typhon的祖先确实是一个新的矮人星系,那么解释这一明显矛盾的可能场景包括一种动态互动,增加了Typhon的轨道能量,这是一系列增强的后期明星形成,它提高了[$α$/fe],//或另一个由另一个达瓦夫Galaxy Tore Infortall to nof to nof to nof to nof to nof to nof to nof to nof to nof to nof to nof to nof to nof to in Infortal to nof。另外,Typhon可能是一个更大的破坏矮星银河系的高能尾巴,它通过动态摩擦失去了能量。我们无法以银河系的方式清楚地鉴定出已知的低能祖细胞,但是宇宙学模拟中70%的高素质恒星来自大型矮星系的高能尾巴。因此,在识别新的子结构的起源之前,泰弗(Typhon)运动学和化学的令人惊讶的组合强调了已知的已知子结构的动态历史和详细的丰富性。

We present the first high-resolution chemical abundances of seven stars in the recently discovered high-energy stream Typhon. Typhon stars have apocenters >100 kpc, making this the first detailed chemical picture of the Milky Way's very distant stellar halo. Though the sample size is limited, we find that Typhon's chemical abundances are more like a dwarf galaxy than a globular cluster, showing a metallicity dispersion and no presence of multiple stellar populations. Typhon stars display enhanced $α$-element abundances and increasing r-process abundances with increasing metallicity. The high-$α$ abundances suggest a short star formation duration for Typhon, but this is at odds with expectations for the distant Milky Way halo and the presence of delayed r-process enrichment. If the progenitor of Typhon is indeed a new dwarf galaxy, possible scenarios explaining this apparent contradiction include a dynamical interaction that increases Typhon's orbital energy, a burst of enhanced late-time star formation that raises [$α$/Fe], and/or group preprocessing by another dwarf galaxy before infall into the Milky Way. Alternatively, Typhon could be the high-energy tail of a more massive disrupted dwarf galaxy that lost energy through dynamical friction. We cannot clearly identify a known low-energy progenitor of Typhon in the Milky Way, but 70% of high-apocenter stars in cosmological simulations are from high-energy tails of large dwarf galaxies. Typhon's surprising combination of kinematics and chemistry thus underscores the need to fully characterize the dynamical history and detailed abundances of known substructures before identifying the origin of new substructures.

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