Planck Galactic Cold Clumps at High Galactic Latitude-A Study with CO Lines
Abstract
Gas at high Galactic latitude is a relatively little-noticed component of the interstellar medium. In an effort to address this, forty-one Planck Galactic Cold Clumps at high Galactic latitude (HGal; ) were observed in CO, CO and CO J=1-0 lines, using the Purple Mountain Observatory 13.7-m telescope. CO (1-0) and CO (1-0) emission was detected in all clumps while CO (1-0) emission was only seen in sixteen clumps. The highest and average latitudes are and , respectively. Fifty-one velocity components were obtained and then each was identified as a single clump. Thirty-three clumps were further mapped at 1 resolution and 54 dense cores were extracted. Among dense cores, the average excitation temperature of CO is 10.3 K. The average line widths of thermal and non-thermal velocity dispersions are km s and km s respectively, suggesting that these cores are dominated by turbulence. Distances of the HGal clumps given by Gaia dust reddening are about pc. The ratio of / is significantly higher than that in the solar neighbourhood, implying that HGal gas has a different star formation history compared to the gas in the Galactic disk. HGal cores with sizes from pc show no notable Larson's relation and the turbulence remains supersonic down to a scale of slightly below pc. None of the HGal cores which bear masses from 0.01-1 are gravitationally bound and all appear to be confined by outer pressure.
Cite
@article{arxiv.2107.08182,
title = {Planck Galactic Cold Clumps at High Galactic Latitude-A Study with CO Lines},
author = {Fengwei Xu and Yuefang Wu and Tie Liu and Xunchuan Liu and Chao Zhang and Jarken Esimbek and Sheng-Li Qin and Di Li and Ke Wang and Jinghua Yuan and Fanyi Meng and Tianwei Zhang and David Eden and K. Tatematsu and Neal J. Evans and Paul. F. Goldsmith and Qizhou Zhang and C. Henkel and Hee-Weon Yi and Jeong-Eun Lee and Mika Saajasto and Gwangeong Kim and Mika Juvela and Dipen Sahu and Shin-Ying Hsu and Sheng-Yuan Liu and Somnath Dutta and Chin-Fei Lee and Chuan-Peng Zhang and Ye Xu and Binggang Ju},
journal= {arXiv preprint arXiv:2107.08182},
year = {2021}
}
Comments
35 pages, 13 figures