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BFS 10: A nascent bipolar H II region in a filamentary molecular cloud

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arxiv 2209.05628 v1 pith:OIHGNT7R submitted 2022-09-12 astro-ph.GA

BFS 10: A nascent bipolar H II region in a filamentary molecular cloud

classification astro-ph.GA
keywords regioncloudinfraredmolecularstarassociatedbipolarembedded
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a study of the compact blister HII region BFS 10 and its highly filamentary molecular cloud. We utilize 12CO observations from the Five College Radio Astronomy Observatory to determine the distance, size, mass, and velocity structure of the molecular cloud. Infrared observations obtained from the UKIRT Infrared Deep Sky Survey and the Spitzer Infrared Array Camera, as well as radio continuum observations from the Canadian Galactic Plane Survey, are used to extract information about the central HII region. This includes properties such as the ionizing photon rate and infrared luminosity, as well as identifying a rich embedded star cluster associated with the central O9 V star. Time-scales regarding the expansion rate of the HII region and lifetime of the ionizing star reveal a high likelihood that BFS 10 will develop into a bipolar HII region. Although the region is expected to become bipolar, we conclude from the clouds velocity structure that there is no evidence to support the idea that star formation at the location of BFS 10 was triggered by two colliding clouds. A search for embedded young stellar objects (YSOs) within the molecular cloud was performed. Two distinct regions of YSOs were identified; one region associated with the rich embedded cluster and another sparse group associated with an intermediate mass YSO.

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Cited by 1 Pith paper

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  1. Bipolar HII regions Produced by Cloud-Cloud Collisions

    astro-ph.GA 2026-07 conditional novelty 5.0

    Head-on collisions of 500 M⊙ clouds form hub-filament systems and short-lived bipolar HII regions whose appearance depends strongly on viewing angle, with secondary radio and mid-IR metrics that may flag CCC origins.