English

Investigating the structure and fragmentation of a highly filamentary IRDC

Astrophysics of Galaxies 2016-08-16 v2

Abstract

We present 3.7 arcsec (~0.05 pc) resolution 3.2 mm dust continuum observations from the IRAM PdBI, with the aim of studying the structure and fragmentation of the filamentary Infrared Dark Cloud G035.39-00.33. The continuum emission is segmented into a series of 13 quasi-regularly spaced (~0.18pc) cores, following the major axis of the IRDC. We compare the spatial distribution of the cores with that predicted by theoretical work describing the fragmentation of hydrodynamic fluid cylinders, finding a significant (a factor of ~8) discrepancy between the two. Our observations are consistent with the picture emerging from kinematic studies of molecular clouds suggesting that the cores are harboured within a complex network of independent sub-filaments. This result emphasizes the importance of considering the underlying physical structure, and potentially, dynamically important magnetic fields, in any fragmentation analysis. The identified cores exhibit a range in (peak) beam-averaged column density (3.6x1023cm2<NH,c<8.0x1023cm23.6{\rm x}10^{23}{\rm cm}^{-2}<N_{H,c}<8.0{\rm x}10^{23}{\rm cm}^{-2}), mass (8.1M<Mc<26.1M8.1M_{\odot}<M_{c}<26.1M_{\odot}), and number density (6.1x105cm3<nH,c,eq<14.7x105cm36.1{\rm x}10^{5}{\rm cm}^{-3}<n_{H, c, eq}<14.7{\rm x}10^{5}{\rm cm}^{-3}). Two of these cores, dark in the mid-infrared, centrally-concentrated, monolithic (with no traceable substructure at our PdBI resolution), and with estimated masses of the order ~20-25MM_{\odot}, are good candidates for the progenitors of intermediate-to-high-mass stars. Virial parameters span a range 0.2<αvir<1.30.2<\alpha_{\rm vir}<1.3. Without additional support, possibly from dynamically important magnetic fields with strengths of the order 230μ\muG<B<670μ\muG, the cores are susceptible to gravitational collapse. These results may imply a multilayered fragmentation process, which incorporates the formation of sub-filaments, embedded cores, and the possibility of further fragmentation.

Keywords

Cite

@article{arxiv.1607.07452,
  title  = {Investigating the structure and fragmentation of a highly filamentary IRDC},
  author = {J. D. Henshaw and P. Caselli and F. Fontani and I. Jimenez-Serra and J. C. Tan and S. N. Longmore and J. E. Pineda and R. J. Parker and A. T. Barnes},
  journal= {arXiv preprint arXiv:1607.07452},
  year   = {2016}
}

Comments

14 pages (plus 10 page appendix), 6 figures (plus 11 in appendix), 3 tables. Accepted for publication in MNRAS. Abstract modified due to character limit. This updated version includes minor corrections (including typos and updated references)