On the density regime probed by HCN emission
arXiv:2112.05543 · doi:10.1093/mnras/stad202
Abstract
HCN J10 emission is commonly used as a dense gas tracer, thought to mainly arise from gas with densities . This has made it a popular tracer in star formation studies. However, there is increasing evidence from observational surveys of `resolved' molecular clouds that HCN can trace more diffuse gas. We investigate the relationship between gas density and HCN emission through post-processing of high resolution magnetohydrodynamical simulations of cloud-cloud collisions. We find that HCN emission traces gas with a mean volumetric density of and a median visual extinction of . We therefore predict a characteristic density that is an order of magnitude less than the "standard" characteristic density of . Indeed, we find in some cases that there is clear HCN emission from the cloud even though there is no gas denser than this standard critical density. We derive luminosity-to-mass conversion factors for the amount of gas at or at densities or , finding values of and , respectively. In some cases, the luminosity to mass conversion factor predicted mass in regions where in actuality there contains no mass.
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