论文标题

从巨大分子云中形成恒星关联和簇的模型

A model for the formation of stellar associations and clusters from giant molecular clouds

论文作者

Grudić, Michael Y., Kruijssen, J. M. Diederik, Faucher-Giguère, Claude-André, Hopkins, Philip F., Ma, Xiangcheng, Quataert, Eliot, Boylan-Kolchin, Michael

论文摘要

我们提出了一大堆具有巨大的恒星巨型分子云(GMC)的MHD模拟,并具有出色的反馈,从而扩展了先前的工作,通过模拟云质量和大小参数空间中每个点的10个不同的随机实现。发现由于出色的反馈,云的云分散,既有自我磨损的恒星簇和未结合的恒星,都保留在同一基础结构恒星密度的基础连续体中,即。分层群集形成场景。在重力结合的恒星簇中出生的恒星的比例与恒星反馈设定的整体云星形形成效率有关,但是由于恒星形成气流的小规模细节的随机变化而具有显着的散射。我们使用数值结果来校准一个模型,以绘制自磨碎的GMC的批量特性(质量,大小和金属性)在其形成的星团群体上,并根据云级分布在统计上表示。从M83中观察到的GMC目录的群集目录合成群集目录,我们发现该模型仅使用标准的IMF和Stellar Evolution模型作为反馈的输入来预测与观察值非常吻合的初始恒星簇质量和大小。在我们的模型中,重力强度与恒星反馈的比率是设定星形簇的质量的关键参数,而各种反馈通道的直接恒星辐射(光子动量和光电离)是GMC量表上最重要的。

We present a large suite of MHD simulations of turbulent, star-forming giant molecular clouds(GMCs) with stellar feedback, extending previous work by simulating 10 different random realizations for each point in the parameter space of cloud mass and size. It is found that oncethe clouds disperse due to stellar feedback, both self-gravitating star clusters and unbound stars generally remain, which arise from the same underlying continuum of substructured stellar density, ie. the hierarchical cluster formation scenario. The fraction of stars that are born within gravitationally-bound star clusters is related to the overall cloud star formation efficiency set by stellar feedback, but has significant scatter due to stochastic variations in the small-scale details of the star-forming gas flow. We use our numerical results to calibrate a model for mapping the bulk properties (mass, size, and metallicity) of self-gravitating GMCs onto the star cluster populations they form, expressed statistically in terms of cloud-level distributions. Synthesizing cluster catalogues from an observed GMC catalogue in M83, we find that this model predicts initial star cluster masses and sizes that are in good agreement with observations, using only standard IMF and stellar evolution models as inputs for feedback. Within our model, the ratio of the strength of gravity to stellar feedback is the key parameter setting the masses of star clusters, and of the various feedback channels direct stellar radiation(photon momentum and photoionization) is the most important on GMC scales.

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