论文标题
矮人不规则的星系WLM中CO内核和恒星形成的环境
The Environments of CO Cores and Star Formation in the Dwarf Irregular Galaxy WLM
论文作者
论文摘要
矮星系(DIRR)的低金属性极大地影响了分子云的形成和结构。这些主要由H $ _2 $组成的云通常由CO追踪,但尽管持续的恒星形成,但仍发现低金属星系具有Little CO。为了探测矮星系中CO核心形成所需的条件,我们使用了Rubio等人的目录。 (2022年,在制备中)用于WLM中的CO核,该核心是一个局部群,氧气丰度占太阳能的13%。在这里,我们旨在表征这57个CO内核的银河环境。我们根据彼此的接近性和强烈的fuv发射将核心分组在一起,检查了恒星形成区域的性质,这些恒星形成区域包围着岩心的岩心和周围环境。我们发现高HI表面密度不一定与较高的总CO质量相对应,但是CO质量较高的区域的表面密度较高。我们还发现,跨越各种年龄的恒星形成区域中的核心在年龄与CO核心质量之间没有相关性,这表明核心的尺寸很小并不是由于年龄随着年龄的增长而碎片。在各种不同的本地环境中存在CO内核,以及具有和不具有CO内核的恒星形成区域之间的相似特性,这使我们得出结论,没有明显的环境特征可以驱动这些CO内核的形成。
The low metallicities of dwarf irregular galaxies (dIrr) greatly influence the formation and structure of molecular clouds. These clouds, which consist primarily of H$_2$, are typically traced by CO, but low metallicity galaxies are found to have little CO despite ongoing star formation. In order to probe the conditions necessary for CO core formation in dwarf galaxies, we have used the catalog of Rubio et al. (2022, in preparation) for CO cores in WLM, a Local Group dwarf with an oxygen abundance that is 13% of solar. Here we aim to characterize the galactic environments in which these 57 CO cores formed. We grouped the cores together based on proximity to each other and strong FUV emission, examining properties of the star forming region enveloping the cores and the surrounding environment where the cores formed. We find that high HI surface density does not necessarily correspond to higher total CO mass, but regions with higher CO mass have higher HI surface densities. We also find the cores in star forming regions spanning a wide range of ages show no correlation between age and CO core mass, suggesting that the small size of the cores is not due to fragmentation of the clouds with age. The presence of CO cores in a variety of different local environments, along with the similar properties between star forming regions with and without CO cores, leads us to conclude that there are no obvious environmental characteristics that drive the formation of these CO cores.