论文标题

在不同密度螺旋臂环境中的簇和OB关联的形成

The formation of clusters and OB associations in different density spiral arm environments

论文作者

Dobbs, C. L., Bending, T. J. R., Pettitt, A. R., Buckner, A. S. M., Bate, M. R.

论文摘要

我们介绍了螺旋臂中簇的形成和演变的模拟。模拟遵循两个不同的螺旋臂区域,总气体质量变化以产生一系列不同的质量簇。我们发现,包括光电离反馈会产生观察到的簇质量半径关系,与没有反馈相比,簇的半径增加。超新星对簇特性几乎没有影响。我们发现,在高密度,高气体质量模拟中,恒星形成受反馈的影响较小,因为在反馈会产生很大影响之前,恒星形成迅速发生。在我们最低的气体密度模拟中,所得的簇完全不同(例如,簇及其质量)与外壳没有反馈。恒星形成率也被显着抑制。该模型中簇中恒星的比例随着时间的变化约20 \%而减小。在我们最低的气体模拟模型中,我们看到了与OB关联相似的属性组形成组的形成,特别是类似于Orion IA。我们建议低密度和更强的初始动力学有利于形成关联而不是簇。在所有模型中,群集的形​​成都是复杂的,簇合并和分裂。形成最大的群集倾向于经历更多的合并。

We present simulations of the formation and evolution of clusters in spiral arms. The simulations follow two different spiral arm regions, and the total gas mass is varied to produce a range of different mass clusters. We find that including photoionizing feedback produces the observed cluster mass radius relation, increasing the radii of clusters compared to without feedback. Supernovae have little impact on cluster properties. We find that in our high density, high gas mass simulations, star formation is less affected by feedback, as star formation occurs rapidly before feedback has much impact. In our lowest gas density simulation, the resulting clusters are completely different (e.g. the number of clusters and their masses) to the case with no feedback. The star formation rate is also significantly suppressed. The fraction of stars in clusters in this model decreases with time flattening at about 20\%. In our lowest gas simulation model, we see the formation of a star forming group with properties similar to an OB association, in particular similar to Orion Ia. We suggest that low densities, and stronger initial dynamics are conducive to forming associations rather than clusters. In all models cluster formation is complex with clusters merging and splitting. The most massive clusters which form have tended to undergo more mergers.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源