论文标题

使用分子气体观测来指导恒星簇模拟的初始条件

Using Molecular Gas Observations to Guide Initial Conditions for Star Cluster Simulations

论文作者

Sills, Alison, Rieder, Steven, Buckner, Anne S. M., Hacar, Alvaro, Zwart, Simon Portegies, Teixeira, Paula S.

论文摘要

恒星簇的最早演变涉及新形成的恒星的共存阶段,以及它们形成的气体。在此类地区对气体的观察提供了大量数据,这些数据可以告知遵循此类对象的演变所需的模拟。我们提出了一种将观察到的气体特性转化为包括气体,恒星和持续恒星形成的模拟的初始条件的方法。我们使用Orion星云群展示了我们的技术。由于观察结果无法为我们的模拟提供所有必要的信息,因此我们为丢失的数据做出选择并评估这些选择的影响。我们发现,结果对天空平面中气体速度的选择不敏感。但是,周围气体云的性能(例如总密度和大小)对所得星团的恒星形成速率和组装的速度有影响。我们还分析了集群的恒星特性,发现恒星变得更加紧密,即使在细丝中形成新恒星也形成了更强的径向分布。

The earliest evolution of star clusters involves a phase of co-existence of both newly-formed stars, and the gas from which they are forming. Observations of the gas in such regions provide a wealth of data that can inform the simulations which are needed to follow the evolution of such objects forward in time. We present a method for transforming the observed gas properties into initial conditions for simulations that include gas, stars, and ongoing star formation. We demonstrate our technique using the Orion Nebula Cluster. Since the observations cannot provide all the necessary information for our simulations, we make choices for the missing data and assess the impact of those choices. We find that the results are insensitive to the adopted choices of the gas velocity in the plane of the sky. The properties of the surrounding gas cloud (e.g. overall density and size), however, have an effect on the star formation rate and pace of assembly of the resultant star cluster. We also analyze the stellar properties of the cluster and find that the stars become more tightly clustered and in a stronger radial distribution even as new stars form in the filament.

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