English

SMA observations of the W3(OH) complex: Dynamical differentiation between W3(H$_2$O) and W3(OH)

Solar and Stellar Astrophysics 2016-01-27 v1 Astrophysics of Galaxies

Abstract

We present Submillimeter Array (SMA) observations of the HCN\,(3--2) and HCO+^+\,(3--2) molecular lines toward the W3(H2_2O) and W3(OH) star-forming complexes. Infall and outflow motions in the W3(H2_2O) have been characterized by observing HCN and HCO+^+ transitions. High-velocity blue/red-shifted emission, tracing the outflow, show multiple knots, which might originate in episodic and precessing outflows. `Blue-peaked' line profiles indicate that gas is infalling onto the W3(H2_2O) dust core. The measured large mass accretion rate, 2.3×\times103^{-3}~M_{\odot}~yr1^{-1}, together with the small free-fall time scale, 5×\times103^{3}~yr, suggest W3(H2_2O) is in an early evolutionary stage of the process of formation of high-mass stars. For the W3(OH), a two-layer model fit to the HCN and HCO+^+ spectral lines and Spizter/IRAC images support that the W3(OH) H{\sc ii} region is expanding and interacting with the ambient gas, with the shocked neutral gas being expanding with an expansion timescale of 6.4×\times103^{3}~yr. The observations suggest different kinematical timescales and dynamical states for the W3(H2_2O) and W3(OH).

Keywords

Cite

@article{arxiv.1511.08325,
  title  = {SMA observations of the W3(OH) complex: Dynamical differentiation between W3(H$_2$O) and W3(OH)},
  author = {Sheng-Li Qin and Peter Schilke and Jingwen Wu and Tie Liu and Yuefang Wu and Álvaro Sánchez-Monge and Ying Liu},
  journal= {arXiv preprint arXiv:1511.08325},
  year   = {2016}
}

Comments

accepted by MNRAS