Large-scale molecular gas distribution in the M17 cloud complex: dense gas conditions of massive star formation?
arXiv:2001.09559 · doi:10.3847/1538-4357/ab700a
Abstract
The non-uniform distribution of gas and protostars in molecular clouds is caused by combinations of various physical processes that are difficult to separate. We explore this non-uniform distribution in the M17 molecular cloud complex that hosts massive star formation activity using the CO () and CO () emission lines obtained with the Nobeyama 45m telescope. Differences in clump properties such as mass, size, and gravitational boundedness reflect the different evolutionary stages of the M17-H{\scriptsize II} and M17-IRDC clouds. Clumps in the M17-H{\scriptsize II} cloud are denser, more compact, and more gravitationally bound than those in M17-IRDC. While M17-H{\scriptsize II} hosts a large fraction of very dense gas (27\%) that has column density larger than the threshold of 1 g cm theoretically predicted for massive star formation, this very dense gas is deficient in M17-IRDC (0.46\%). Our HCO () and HCN () observations with the TRAO 14m telescope, {\nlqb trace all gas with column density higher than cm}, confirm the deficiency of high density ( cm) gas in M17-IRDC. Although M17-IRDC is massive enough to potentially form massive stars, its deficiency of very dense gas and gravitationally bound clumps can explain the current lack of massive star formation.
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