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The impact of stellar feedback on high-z galaxy populations

机译:Stellar反馈对高Z银河群体的影响

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One major deficiency of state-of-the-art galaxy formation models consists in their inability of capturing the observed galaxy downsizing trend significantly over-estimating the number density of low-mass galaxies, in particular at high redshifts. Employing an enhanced galaxy formation model with a full chemical enrichment scheme(DeLucia et al., 2014), we present an improved model for stellar feedback(based on parametrizations from cosmological zoom simulations), in which strong gas outflows occur due to bursty star formation at high z, while star formation is mainly "quiescent"not causing any significant outflows anymore at low z. Due to the stronger gas outflows at high z, early star formation is strongly delayed towards later times. This helps to sufficiently detach the evolution of galaxy growth from the hiearchical dark matter assembly resulting in a fairly good agreement with the evolution of the observed stellar mass function(SMF, see Fig. 1). With our new feedback scheme, we can also successfully reproduce many other observational constraints, such as the metallicity content, the cold gas fractions or the quiescent galaxy fractions at both low and high redshifts. The resulting new-generation galaxy catalogues(Hirschmann et al., in prep)based on that model are expected to significantly contribute to the interpretation of current and up-coming large-scale surveys(HST, JWST, Euclid). This will, in turn, provide a rapid verification and refinement of our modeling.
机译:状态的最先进的星系形成模型中的一个主要缺陷在于,它们不能在高红移捕获被观察者星系小型化趋势显著高估低质量星系的个数密度,特别是。采用增强的星系形成模型采用了全化学富集方案(德卢西亚等人,2014),我们提出了恒星反馈的改进的模型(基于从参数化宇宙学变焦模拟)由于突发恒星形成,在这种强气体流出发生在高Z,而恒星的形成主要是“静”不低Z造成任何显著外流了。由于在高z上的强大气外流,早期的恒星形成强烈对稍后的时间延迟。这有助于充分分离星系增长从hiearchical暗物质装配导致与观测到的恒星质量函数的演化相当好的协议的演变(SMF,参见图1)。随着我们新的反馈方案,我们也可以成功地再现许多其他观测约束,如金属丰含量,冷气体组分或在低和高红移静态星系分数。基于该模型所产生的新一代星系目录(赫斯曼等人,在准备),据预计,当前和崭露头角的大规模调查的解释(HST,JWST,欧几里得)显著贡献。这将反过来,提供我们的建模的快速验证和完善。

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