We use the Sternberg et al. (2014) theory for interstellar atomic to molecular (HI-to-H2) conversion to analyze HI-to-H2 transitions in five (low-mass) star-forming and dark regions in the Perseus molecular cloud, B1, B1E, B5, IC348, and NGC1333. The observed HI mass surface densities of 6.3 to 9.2 M⊙ pc−2 are consistent with HI-to-H2 transitions dominated by HI-dust shielding in predominantly atomic envelopes. For each source, we constrain the dimensionless parameter αG, and the ratio IUV/n, of the FUV intensity to hydrogen gas density. We find αG values from 5.0 to 26.1, implying characteristic atomic hydrogen densities 11.8 to 1.8 cm−3, for IUV≈1 appropriate for Perseus. Our analysis implies that the dusty HI shielding layers are probably multiphased, with thermally unstable UNM gas in addition to cold CNM within the 21 cm kinematic radius.
@article{arxiv.1505.06200,
title = {HI-to-H2 Transitions in the Perseus Molecular Cloud},
author = {Shmuel Bialy and Amiel Sternberg and Min-Young Lee and Franck Le Petit and Evelyne Roueff},
journal= {arXiv preprint arXiv:1505.06200},
year = {2015}
}
Comments
5 pages, 2 Figures. Minor improvements suggested by the referee. Accepted for publication in the Astrophysical Journal