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Ionized carbon as a tracer of the assembly of interstellar clouds

Astrophysics of Galaxies 2023-02-21 v1

Abstract

Molecular hydrogen clouds are a key component of the interstellar medium because they are the birthplaces for stars. They are embedded in atomic gas that pervades the interstellar space. However, the details of how molecular clouds assemble from and interact with the atomic gas are still largely unknown. As a result of new observations of the 158~μ\mum line of ionized carbon CII in the Cygnus region within the FEEDBACK program on SOFIA (Stratospheric Observatory for Infrared Astronomy), we present compelling evidence that CII unveils dynamic interactions between cloud ensembles. This process is neither a head-on collision of fully molecular clouds nor a gentle merging ofonly atomic clouds. Moreover, we demonstrate that the dense molecular clouds associated with the DR21 and W75N star-forming regions and a cloud at higher velocity are embedded in atomic gas and all components interact over a large range of velocities (20 km/s). The atomic gas has a density of 100 cm3^{-3} and a temperature of 100 K. We conclude that the CII 158 μ\mum line is an excellent tracer to witness the processes involved in cloud interactions and anticipate further detections of this phenomenon in other regions

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Cite

@article{arxiv.2302.09266,
  title  = {Ionized carbon as a tracer of the assembly of interstellar clouds},
  author = {Nicola Schneider and Lars Bonne and Sylvain Bontemps and Slawa Kabanovic and Robert Simon and Volker Ossenkopf-Okada and Christof Buchbender and Juergen Stutzki and Marc Mertens and Oliver Ricken and Timea Csengeri and Alexander G. G. M. Tielens},
  journal= {arXiv preprint arXiv:2302.09266},
  year   = {2023}
}

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