论文标题

恒星形成历史的随机建模II:分子云和气体流入的恒星形成变异性

Stochastic modelling of star-formation histories II: star-formation variability from molecular clouds and gas inflow

论文作者

Tacchella, Sandro, Forbes, John C., Caplar, Neven

论文摘要

银河发展的关键不确定性是调节恒星形成的物理学,从与星系内分子云的生命周期相关的小规模过程到大规模过程,例如气体积聚到星系中。我们通过分析方法跟踪星系气体(“调节器模型”)的分析方法研究了此类过程的烙印。具体而言,我们量化了不同时间尺度上的恒星形成速率(SFR)的强度,即恒星形态历史记录的功率谱密度(PSD),并将其连接到分子云的气体流入和生命周期。我们表明,在一般情况下,SFR的PSD有三个断裂,对应于流入率的相关时间,星系中气体储量的平衡时间尺度以及单个分子云的平均寿命。在长时间和中间时间尺度(相对于银河系的动态时间尺度)上,PSD通常是由流入率的变异性以及流出和气体消耗之间的相互作用的变异性设置的。在短时间内,PSD显示了与分子云的生命周期相关的附加成分,可以通过在高频下的较高频率下的幂律斜率大约$β\ oble的势力斜率来描述,在平均云寿命接近平均值的情况下。我们讨论了各种星系方案中的恒星形成“爆发性”,研究了有关主序列山脊线的星系的演变,并探讨了我们方法在理解星系集成测量的云规模上的恒星形成过程的适用性。

A key uncertainty in galaxy evolution is the physics regulating star formation, ranging from small-scale processes related to the life-cycle of molecular clouds within galaxies to large-scale processes such as gas accretion onto galaxies. We study the imprint of such processes on the time-variability of star formation with an analytical approach tracking the gas mass of galaxies ("regulator model"). Specifically, we quantify the strength of the fluctuation in the star-formation rate (SFR) on different timescales, i.e. the power spectral density (PSD) of the star-formation history, and connect it to gas inflow and the life-cycle of molecular clouds. We show that in the general case the PSD of the SFR has three breaks, corresponding to the correlation time of the inflow rate, the equilibrium timescale of the gas reservoir of the galaxy, and the average lifetime of individual molecular clouds. On long and intermediate timescales (relative to the dynamical timescale of the galaxy), the PSD is typically set by the variability of the inflow rate and the interplay between outflows and gas depletion. On short timescales, the PSD shows an additional component related to the life-cycle of molecular clouds, which can be described by a damped random walk with a power-law slope of $β\approx2$ at high frequencies with a break near the average cloud lifetime. We discuss star-formation "burstiness" in a wide range of galaxy regimes, study the evolution of galaxies about the main sequence ridgeline, and explore the applicability of our method for understanding the star-formation process on cloud-scale from galaxy-integrated measurements.

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