论文标题

Galaxy Evolution II的新分析解决方案II:风回收,银河喷泉和晚期星系

New Analytic Solutions for Galaxy Evolution II: Wind Recycling, Galactic Fountains and Late-Type Galaxies

论文作者

Lapi, A., Pantoni, L., Boco, L., Danese, L.

论文摘要

我们概括了Pantoni等人中提出的分析解决方案。 (2019年)通过对风回收和银河喷泉进行简单而有效的描述,以便自我一致地研究气体,恒星,金属和灰尘含量的空间平均时间演变(均为盘状的晚期型星系(LTG))。我们的分析解决方案在补充了参数设置的特定处方并从$ n- $车身模拟中获得了晕圈增强率时,可以利用以重现主要统计关系的主要统计关系。这些涉及到恒星质量,星形形成效率,气体质量分数,气体/恒星金属性,灰尘质量,恒星形成速率,特定的角动量和整体质量/金属预算。我们的分析解决方案允许轻松解开LTG中统治银河系形成的主要物理过程的各种作用;特别是,我们强调了风回收和银河喷泉在有效翻新气体,扩展恒星形成时间表并增强气体和恒星中的金属富集方面的关键相关性。总而言之,我们的分析解决方案构成了一种透明,方便且快速的工具,可以为改善目前在更复杂的半分析模型和数值模拟中实现的(子网格)的物理食谱提供基础,并可以为当地和更高的局部和更高的ltgs和更高的ltgs andgs和未来提供解释和预测当前和未来的测试。

We generalize the analytic solutions presented in Pantoni et al. (2019) by including a simple yet effective description of wind recycling and galactic fountains, with the aim of self-consistently investigating the spatially-averaged time evolution of the gas, stellar, metal, and dust content in disc-dominated late-type galaxies (LTGs). Our analytic solutions, when supplemented with specific prescriptions for parameter setting and with halo accretion rates from $N-$body simulations, can be exploited to reproduce the main statistical relationships followed by local LTGs; these involve, as a function of the stellar mass, the star formation efficiency, the gas mass fraction, the gas/stellar metallicity, the dust mass, the star formation rate, the specific angular momentum, and the overall mass/metal budget. Our analytic solutions allow to easily disentangle the diverse role of the main physical processes ruling galaxy formation in LTGs; in particular, we highlight the crucial relevance of wind recycling and galactic fountains in efficiently refurnishing the gas mass, extending the star-formation timescale, and boosting the metal enrichment in gas and stars. All in all, our analytic solutions constitute a transparent, handy, and fast tool that can provide a basis for improving the (subgrid) physical recipes presently implemented in more sophisticated semi-analytic models and numerical simulations, and can offer a benchmark for interpreting and forecasting current and future spatially-averaged observations of local and higher redshift LTGs.

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