English

Gas and Dust Properties in the Chamaeleon Molecular Cloud Complex based on the Optically Thick HI

Astrophysics of Galaxies 2019-06-26 v1

Abstract

Gas and dust properties in the Chamaeleon molecular cloud complex have been investigated with emission lines from atomic hydrogen (HI) and 12CO molecule, dust optical depth at 353 GHz (τ353\tau_{353}), and JJ-band infrared extinction (AJA_{J}). We have found a scatter correlation between the HI integrated intensity (WHIW_{\rm HI}) and τ353\tau_{353} in the Chamaeleon region. The scattering has been examined in terms of possible large optical depth in HI emission (τHI\tau_{\rm HI}) using a total column density (NHN_{\rm H}) model based on τ353\tau_{353}. A nonlinear relation of τ353\tau_{353} with the \sim1.2 power of AJA_{J} has been found in opaque regions (AJA_{J} \gtrsim 0.3 mag), which may indicate dust evolution effect. If we apply this nonlinear relation to the NHN_{\rm H} model (i.e., NHτ3531/1.2N_{\rm H} \propto \tau_{353}^{1/1.2}) allowing arbitrary τHI\tau_{\rm HI}, the model curve reproduces well the WHIW_{\rm HI}-τ353\tau_{353} scatter correlation, suggesting optically thick HI (τHI\tau_{\rm HI} \sim1.3) extended around the molecular clouds. Based on the correlations between the CO integrated intensity and the NHN_{\rm H} model, we have then derived the CO-to-H2_{2} conversion factor (XCOX_{\rm CO}) on \sim1.5^{\circ} scales (corresponding to \sim4 persec) and found spatial variations of XCOX_{\rm CO} \sim(0.5-3)×\times1020^{20} cm2^{-2} K1^{-1} km1^{-1} s across the cloud complex, possibly depending on the radiation field inside or surrounding the molecular clouds. These gas properties found in the Chamaeleon region are discussed through a comparison with other local molecular cloud complexes.

Keywords

Cite

@article{arxiv.1905.04184,
  title  = {Gas and Dust Properties in the Chamaeleon Molecular Cloud Complex based on the Optically Thick HI},
  author = {Katsuhiro Hayashi and Ryuji Okamoto and Hiroaki Yamamoto and Takahiro Hayakawa and Kengo Tachihara and Yasuo Fukui},
  journal= {arXiv preprint arXiv:1905.04184},
  year   = {2019}
}

Comments

30 pages, 21 figures, Accepted for ApJ