论文标题

nihao xxvi:自然与养育,恒星形成主要序列及其散射的起源

NIHAO XXVI: Nature versus nurture, the Star Formation Main Sequence and the origin of its scatter

论文作者

Blank, Marvin, Meier, Liam E., Macciò, Andrea V., Dutton, Aaron A., Dixon, Keri L., Soliman, Nadine H., Kang, Xi

论文摘要

我们研究了Nihao星系如何匹配观察到的星形主序列(SFM)及其散射的起源是什么。 Nihao星系重现了SFM,并且通常与观测值一致,但斜率大于统一性,因此明显大于观察到的值。这是因为尽管仍然是SFM的一部分,但在大型恒星质量上观察到的星系已经受到淬火的影响。通过AGN反馈对恒星形成的部分抑制导致较低的恒星形成速率,因此降低了观察到的斜率。我们确认,包括AGN在我们的星系中的影响会导致与观察结果一致的斜率。我们发现银河系与SFM的偏差与其$ z = 0 $暗物质光环浓度相关,因此与其光环形成时间有关。这意味着稍后形式的星系比平均水平高的星系,反之亦然。我们通过重新解释位于SFM(高于平均水平的SFR)上方的星系(如SFM左侧(低于平均水平的恒星质量),反之亦然),解释了与SFR的明显相关性。因此,后来形成的光环的恒星质量低于平均水平,这仅仅是因为它们的形成恒星的时间低于平均水平,反之亦然。因此,是自然的,即这些星系形成的方式以及何时形成的方式,它在SFR与恒星质量平面中设置了星系的路径。

We investigate how the NIHAO galaxies match the observed star formation main sequence (SFMS) and what the origin of its scatter is. The NIHAO galaxies reproduce the SFMS and generally agree with observations, but the slope is about unity and thus significantly larger than observed values. This is because observed galaxies at large stellar masses, although still being part of the SFMS, are already influenced by quenching. This partial suppression of star formation by AGN feedback leads to lower star formation rates and therefore to lower observed slopes. We confirm that including the effects of AGN in our galaxies leads to slopes in agreement with observations. We find the deviation of a galaxy from the SFMS is correlated with its $z=0$ dark matter halo concentration and thus with its halo formation time. This means galaxies with a higher-than-average star formation rate (SFR) form later and vice versa. We explain this apparent correlation with the SFR by re-interpreting galaxies that lie above the SFMS (higher-than-average SFR) as lying to the left of the SFMS (lower-than-average stellar mass) and vice versa. Thus later forming haloes have a lower-than-average stellar mass, this is simply because they have had less-than-average time to form stars, and vice versa. It is thus the nature, i.e. how and when these galaxies form, that sets the path of a galaxy in the SFR versus stellar mass plane.

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