Large-scale CO J=1-0 observations of the giant molecular cloud associated with the infrared ring N35 with the Nobeyama 45-m telescope.
We report an observational study of the giant molecular cloud (GMC) associated with the Galactic infrared ring-like structure N35 and two nearby HII regions G024.392+00.072 (HII region A) and G024.510-00.060 (HII region B), using the new CO J=1-0 data obtained as a part of the FOREST Unbiased Galactic Plane Imaging survey with the Nobeyama 45-m telescope (FUGIN) project at a spatial resolution of 21". Our CO data revealed that the GMC having a total molecular mass of 2.1x10^6Msun has two velocity components over ~10-15km/s. Majority of molecular gas in the GMC is included in the lower velocity component (LVC) at ~110-114km/s, while the higher velocity components (HVCs) at ~118-126km/s consist of three smaller molecular clouds which are located near the three HII regions. The LVC and HVCs show spatially complementary distributions along the line-of-sight despite of large velocity separations of ~5-15km/s, and are connected in velocity by the CO emission with intermediate intensities. By comparing between the observations and simulations, we discuss a scenario that collisions of the three HVCs with LVC at velocities of ~10-15km/s can interpret these two observational signatures. The intermediate velocity features between the LVC and HVCs can be understood as broad bridge features, which indicate turbulent motion of gas at the interfaces of the collisions, while the spatially complementary distributions represent the cavities created in the LVC by the HVCs through the collisions. Our model indicates that the three HII regions were formed after the onset of the collisions, and it is therefore suggested that the high-mass star formation in the GMC was triggered by the collisions.
Publisher URL: http://arxiv.org/abs/1710.08564
DOI: arXiv:1710.08564v2
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