Evolution and excitation conditions of outflows in high-mass star-forming regions
A. Sanchez-Monge (1), A. Lopez-Sepulcre (2), R. Cesaroni (1), C.M., Walmsley (1,3), C. Codella (1), M.T. Beltran (1), M. Pestalozzi (4), S., Molinari (4) ((1) INAF-Osservatorio Astrofisico di Arcetri (2) IPAG-Grenoble, (3) DIAS (4) IAPS-INAF)

TL;DR
This study investigates how molecular outflow properties and SiO excitation conditions evolve in high-mass star-forming regions, revealing a decrease in SiO abundance over time and an increase in HCO+ outflow energetics.
Contribution
It provides new observational evidence on the evolution of outflow properties and SiO excitation conditions in massive YSOs, linking molecular line ratios to evolutionary stages.
Findings
SiO abundance decreases from 10^(-8) to 10^(-9) with evolution
HCO+ outflow energetics increase as the YSO evolves
SiO(5-4)/(2-1) line ratio increases at higher velocities
Abstract
Theoretical models suggest that massive stars form via disk-mediated accretion, with bipolar outflows playing a fundamental role. A recent study toward massive molecular outflows has revealed a decrease of the SiO line intensity as the object evolves. The present study aims at characterizing the variation of the molecular outflow properties with time, and at studying the SiO excitation conditions in outflows associated with massive YSOs. We used the IRAM30m telescope to map 14 massive star-forming regions in the SiO(2-1), SiO(5-4) and HCO+(1-0) outflow lines, and in several dense gas and hot core tracers. Hi-GAL data was used to improve the spectral energy distributions and the L/M ratio, which is believed to be a good indicator of the evolutionary stage of the YSO. We detect SiO and HCO+ outflow emission in all the sources, and bipolar structures in six of them. The outflow parameters…
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