English

Pilot HI Survey of Planck Galactic Cold Clumps with FAST

Astrophysics of Galaxies 2020-05-27 v1

Abstract

We present a pilot HI survey of 17 Planck Galactic Cold Clumps (PGCCs) with the Five-hundred-meter Aperture Spherical radio Telescope (FAST). HI Narrow Self-Absorption (HINSA) is an effective method to detect cold HI being mixed with molecular hydrogen H2_2 and improves our understanding of the atomic to molecular transition in the interstellar medium. HINSA was found in 58\% PGCCs that we observed. The column density of HINSA was found to have an intermediate correlation with that of 13^{13}CO, following log(N(HINSA))=(0.52±0.26)log(N13CO)+(10±4.1)\rm log( N(HINSA)) = (0.52\pm 0.26) log(N_{^{13}CO}) + (10 \pm 4.1) . HI abundance relative to total hydrogen [HI]/[H] has an average value of 4.4×1034.4\times 10^{-3}, which is about 2.8 times of the average value of previous HINSA surveys toward molecular clouds. For clouds with total column density NH>5×1020\rm_H >5 \times 10^{20} cm2^{-2}, an inverse correlation between HINSA abundance and total hydrogen column density is found, confirming the depletion of cold HI gas during molecular gas formation in more massive clouds. Nonthermal line width of 13^{13}CO is about 0-0.5 km s1^{-1} larger than that of HINSA. One possible explanation of narrower nonthermal width of HINSA is that HINSA region is smaller than that of 13^{13}CO. Based on an analytic model of H2_2 formation and H2_2 dissociation by cosmic ray, we found the cloud ages to be within 106.7^{6.7}-107.0^{7.0} yr for five sources.

Keywords

Cite

@article{arxiv.1912.00588,
  title  = {Pilot HI Survey of Planck Galactic Cold Clumps with FAST},
  author = {Ningyu Tang and Di Li and Pei Zuo and Lei Qian and Tie Liu and Yuefang Wu and Marko Krčo and Mengting Liu and Youling Yue and Yan Zhu and Hongfei Liu and Dongjun Yu and Jinghai Sun and Peng Jiang and Gaofeng Pan and Hui Li and Hengqian Gan and Rui Yao and Shu Liu and FAST Collaboration},
  journal= {arXiv preprint arXiv:1912.00588},
  year   = {2020}
}

Comments

11 pages, 11 figures, accepted by the Research in Astronomy and Astrophysics (RAA)