论文标题

恒星形成发生在密集的气体中,但是“密集”是什么意思?

Star Formation Occurs in Dense Gas, but What Does "Dense" Mean?

论文作者

Evans II, Neal J., Kim, Kee-Tae, Wu, Jingwen, Chao, Zhang, Heyer, Mark, Liu, Tie, Nguyen-Luong, Quang, Kauffmann, Jens

论文摘要

我们报告了一个项目的结果,该项目将HCN和HCO+ J = 1-0发射到内星系中的分子云样本,所有这些都包含积极参与恒星形成的密集团块。我们将这两个分子线示踪剂与毫米连续发射和灭绝进行了比较,从13CO推断为分子云中密集气体的示踪剂。从云到云之间测得的每个示踪剂的线亮度的分数(来自密集气体)的分数差异很大。在所有情况下,总亮度的大部分(在大多数情况下)是在AV> 8 mag阈值以下的气体中,并且在强大的MM连续发射的区域之外产生。在较低的表面密度下,HCN对其他星系的光度的测量可能会主导。对于整个云的密度(每立方英尺约100)的气体,可能会出现对总线光度的实质性,甚至显性的贡献。与以前的研究相似,从HCN或HCO+发射本身定义了稠密的团块,这会导致广泛的团块特性,其中一些物质比以前的研究更大,密度较小。 HCN和HCO+具有相似的能力,可以在此样品中痕量云的云量。对于具有低病毒参数的两个云,13CO绝对是密集气体的更糟糕的示踪剂,但对于其他四种,它在追踪密集的气体时同样好(或坏)。

We report results of a project to map HCN and HCO+ J = 1-0 emission toward a sample of molecular clouds in the inner Galaxy, all containing dense clumps that are actively engaged in star formation. We compare these two molecular line tracers with millimeter continuum emission and extinction, as inferred from 13CO, as tracers of dense gas in molecular clouds. The fraction of the line luminosity from each tracer that comes from the dense gas, as measured by AV > 8 mag, varies substantially from cloud to cloud. In all cases, a substantial fraction (in most cases, the majority) of the total luminosity arises in gas below the AV > 8 mag threshold and outside the region of strong mm continuum emission. Measurements of the luminosity of HCN toward other galaxies will likely be dominated by such gas at lower surface density. Substantial, even dominant, contributions to the total line luminosity can arise in gas with densities typical of the cloud as a whole (densities about 100 per cubic cm). Defining the dense clump from the HCN or HCO+ emission itself, similarly to previous studies, leads to a wide range of clump properties, with some being considerably larger and less dense than in previous studies. HCN and HCO+ have similar ability to trace dense gas for the clouds in this sample. For the two clouds with low virial parameters, the 13CO is definitely a worse tracer of the dense gas, but for the other four, it is equally good (or bad) at tracing dense gas.

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