论文标题

Illustristng星系中的分子氢:仔细比较环境的特征与局部CO&SFR数据

Molecular hydrogen in IllustrisTNG galaxies: carefully comparing signatures of environment with local CO & SFR data

论文作者

Stevens, Adam R. H., Lagos, Claudia del P., Cortese, Luca, Catinella, Barbara, Diemer, Benedikt, Nelson, Dylan, Pillepich, Annalisa, Hernquist, Lars, Marinacci, Federico, Vogelsberger, Mark

论文摘要

我们研究了来自TNG100宇宙学的,流体动力学模拟随$ Z \!= \!0 $的变化的分子氢(H $ _2 $)的后处理含量,评估了中央/卫星状态和宿主的晕Ho质量。我们与一氧化碳(CO)排放调查XCOLD GASS进行了仔细的比较,并具有模拟观察到的TNG100星系,以符合调查的规格。对于$ 10^{11} \!\ simsim \!m _ {\ rm 200c}/{\ rm m} _ {\ odot} \!<\!10^{14.6} $,tng100预测,TNG100预测,用于$ 10^{11} \!\ simsim \!m _ {\ rm 200c}/{\ rm 200c}/{\!10^{14.6} $,tng100预测,tng100预测与卫星相关的样本, $ m _*\!\ geq \!10^9 \,{\ rm m} _ {\ odot} $应在其H $ _2 $分数中的中位数赤字为$ \ sim $ 0.6 $ 0.6 DEX相对于同一恒星质量的中心。一旦考虑了观察和团体发现的不确定性,此赤字的签名就会降至$ \ sim $ 0.2 dex。值得注意的是,我们计算出Xccold Gass Satellites的h $ _2 $的赤字相对于我们的预测,相对于0.2---0.3 DEX的中心差异。我们进一步表明,TNG100和SDSS数据在较密集的环境中固定恒星质量的星系的平均星星的平均恒星形成率相互定量一致。通过跟踪卫星从TNG100中的插入时刻,我们直接表明原子氢(HI)的平均水平高于h $ _2 $的分数耗尽。在支持这张照片的情况下,我们发现卫星的H $ _2 $/HI质量比相对于Xcold Gass中的中心升高。我们可以为环境对H $ _2 $的影响(绝对和相对于HI)提供其他预测,这些预测可以在未来的CO调查中进行频谱堆叠进行测试。

We examine how the post-processed content of molecular hydrogen (H$_2$) in galaxies from the TNG100 cosmological, hydrodynamic simulation changes with environment at $z\!=\!0$, assessing central/satellite status and host halo mass. We make close comparisons with the carbon monoxide (CO) emission survey xCOLD GASS where possible, having mock-observed TNG100 galaxies to match the survey's specifications. For a representative sample of host haloes across $10^{11}\!\lesssim\!M_{\rm 200c}/{\rm M}_{\odot}\!<\!10^{14.6}$, TNG100 predicts that satellites with $m_*\!\geq\!10^9\,{\rm M}_{\odot}$ should have a median deficit in their H$_2$ fractions of $\sim$0.6 dex relative to centrals of the same stellar mass. Once observational and group-finding uncertainties are accounted for, the signature of this deficit decreases to $\sim$0.2 dex. Remarkably, we calculate a deficit in xCOLD GASS satellites' H$_2$ content relative to centrals of 0.2--0.3 dex, in line with our prediction. We further show that TNG100 and SDSS data exhibit continuous declines in the average star formation rates of galaxies at fixed stellar mass in denser environments, in quantitative agreement with each other. By tracking satellites from their moment of infall in TNG100, we directly show that atomic hydrogen (HI) is depleted at fractionally higher rates than H$_2$ on average. Supporting this picture, we find that the H$_2$/HI mass ratios of satellites are elevated relative to centrals in xCOLD GASS. We provide additional predictions for the effect of environment on H$_2$ -- both absolute and relative to HI -- that can be tested with spectral stacking in future CO surveys.

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