论文标题

Vintergatan III:如何重置银河系的金属性

VINTERGATAN III: how to reset the metallicity of the Milky Way

论文作者

Renaud, Florent, Agertz, Oscar, Andersson, Eric P., Read, Justin I., Ryde, Nils, Bensby, Thomas, Rey, Martin P., Feuillet, Diane K.

论文摘要

使用宇宙变焦模拟Vintergatan,我们提出了一种新的场景,以在低 - [$α$/fe]序列的金属贫困端开始,以乳白色的方式呈乳状星系。在这种情况下,银河系被两个不同的气流助长。一个是由大型星系流出的流出,而不是另一个流出的。前者进食内银河流区域,而后者则燃烧了一个相对于主银河平面且化学含量明显较差的外部气盘。最后一次主要合并星系的第一次通过触发了外磁盘中的潮汐压缩,这增加了气体密度并最终导致恒星形成,金属度比内星系低0.75 DEX。这形成了低 - [$α$/fe]序列的第一批恒星。这些原位恒星具有类似光环的运动学,与以银河系为单位相似,因为外盘的倾斜度最终通过重力扭矩与内部盘对齐。我们表明,这种倾斜磁盘场景在星系中很可能很常见。这个过程意味着低 - [$α$/fe]序列是在原位填充的,同时是从两个地层通道,内部和外星系中的两个地层通道,具有不同的金属性。这与银河系磁盘组装的纯粹顺序场景形成鲜明对比,并且可以观察进行测试。

Using the cosmological zoom simulation VINTERGATAN, we present a new scenario for the onset of star formation at the metal-poor end of the low-[$α$/Fe] sequence in a Milky Way-like galaxy. In this scenario, the galaxy is fueled by two distinct gas flows. One is enriched by outflows from massive galaxies, but not the other. While the former feeds the inner galactic region, the latter fuels an outer gas disk, inclined with respect to the main galactic plane, and with a significantly poorer chemical content. The first passage of the last major merger galaxy triggers tidal compression in the outer disk, which increases the gas density and eventually leads to star formation, at a metallicity 0.75 dex lower than the inner galaxy. This forms the first stars of the low-[$α$/Fe] sequence. These in situ stars have halo-like kinematics, similarly to what is observed in the Milky Way, due to the inclination of the outer disk which eventually aligns with the inner one via gravitational torques. We show that this tilting disk scenario is likely to be common in Milky-Way like galaxies. This process implies that the low-[$α$/Fe] sequence is populated in situ, simultaneously from two formation channels, in the inner and the outer galaxy, with distinct metallicities. This contrasts with purely sequential scenarios for the assembly of the Milky Way disk and could be tested observationally.

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