English

Magnetically Aligned Striations in the L914 Filamentary Cloud

Astrophysics of Galaxies 2024-03-06 v1

Abstract

We present CO (J=10J = 1-0) multi-line observations toward the L914 dark cloud in the vicinity of the Cygnus X region, using the 13.7 m millimeter telescope of the Purple Mountain Observatory (PMO). The CO observations reveal in the L914 cloud a long filament with an angular length of 3. ⁣ ⁣6\sim 3.\!\!^\circ 6, corresponding to approximately 50 pc\rm 50~pc at the measured distance of 760 pc\sim\rm 760~pc. Furthermore, a group of hair-like striations are discovered in the two subregions of the L914 cloud, which are connected with the dense ridge of the filament. These striations display quasi-periodic characteristics in both the CO intensity images and position-velocity diagrams. Two of the striations also show increasing velocity gradients and dispersions toward the dense ridge, which could be fitted by accretion flows under gravity. Based on the PlanckPlanck 353 GHz dust polarization data, we find that the striations are well aligned with the magnetic fields. Moreover, both the striations and magnetic fields are perpendicular to the dense ridge, which constructs a bimodal configuration. Using the classic method, we estimate the strength of magnetic field, and further evaluate the relative importance of gravity, turbulence and magnetic field, and find that the L914 cloud is strongly magnetized. Our results suggest that magnetic fields play an important role in the formation of filamentary structures by channelling the material along the striations toward the dense ridge. The comparison between the observations and simulations suggests that striations could be a product of the magnetohydrodynamic (MHD) process.

Keywords

Cite

@article{arxiv.2403.02385,
  title  = {Magnetically Aligned Striations in the L914 Filamentary Cloud},
  author = {Li Sun and Xuepeng Chen and Min Fang and Shaobo Zhang and Yan Gong and Jiancheng Feng and Xuefu Li and Qing-Zeng Yan and Ji Yang},
  journal= {arXiv preprint arXiv:2403.02385},
  year   = {2024}
}

Comments

25 pages, 17 figures, 2 tables. Accepted for publication in AJ

R2 v1 2026-06-28T15:08:54.409Z