ALMA Observations of the massive molecular outflow G331.512-0.103 II: physical properties, kinematics, and geometry modeling
arXiv:1812.09779 · doi:10.3847/1538-4357/aaf9ac
Abstract
We present observations and analysis of the massive molecular outflow G331.512-0.103, obtained with ALMA band 7, continuing the work from Merello et al. (2013). Several lines were identified in the observed bandwidth, consisting of two groups: lines with narrow profiles, tracing the emission from the core ambient medium; and lines with broad velocity wings, tracing the outflow and shocked gas emission. The physical and chemical conditions, such as density, temperature, and fractional abundances are calculated. The ambient medium, or core, has a mean density of cm and a temperature of K. The SiO and SO emission trace the very dense and hot part of the shocked outflow, with values of cm and K. The interpretation of the molecular emission suggests an expanding cavity geometry powered by stellar winds from a new-born UCHII region, alongside a massive and high-velocity molecular outflow. This scenario, along with the estimated physical conditions, is modeled using the 3D geometry radiative transfer code MOLLIE for the SiO(J) molecular line. The main features of the outflow and the expanding shell are reproduced by the model.
19 pages, 17 figures, 2 appendices. Accepted for publication by The Astrophysical Journal
References in corpus (8)
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- SiO line emission from C-type shock waves : interstellar jets and outflows
- Arcsecond Scale Kinematic and Chemical Complexity in Cepheus A-East
- The Possibly Remnant Massive Outflow in G5.89-0.39: I - Observations and Initial MHD Simulations
- SiO excitation from dense shocks in the earliest stages of massive star formation
- Multi-generation massive star-formation in NGC3576
- Physical and chemical differentiation of the luminous star-forming region W49A - Results from the JCMT Spectral Legacy Survey
- G345.45+1.50: An expanding ring-like structure with massive star formation