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Jets and high-velocity bullets in the Orion A outflows.: Is the IRc2 outflow powered by a variable jet?
被引:0
|作者:
Rodríguez-Franco, A
Martín-Pintado, J
Wilson, TL
机构:
[1] Univ Complutense Madrid, Escuela Univ Opt, Secc Dept Opt, Dept Matemat Aplicada 2, E-28037 Madrid, Spain
[2] Observ Astron Nacl IGN, E-28800 Alcala De Henares, Spain
[3] Max Planck Inst Radioastron, D-53010 Bonn, Germany
[4] Univ Arizona, Steward Observ, Sub MM Telescope Observ, Tucson, AZ 85721 USA
关键词:
ISM : clouds;
ISM : individual objects : Orion A;
ISM : jets and outflows;
stars : formation;
stars : mass-loss;
D O I:
暂无
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
We present high sensitivity maps of the High Velocity (HV) CO emission toward the molecular outflows around IRc2 and Orion-S in the Orion A molecular cloud. The maps reveal the presence of HV bullets in both outflows with velocities between 40-80 km s(-1) from the ambient gas velocity. The blue and redshifted CO HV bullets associated with the IRc2 outflow are distributed in thin (12 " - 20 ", 0.02-0.04 pc) elliptical ring-like structures with a size of similar to 10 " x 50 " (0.02 x 0.1 pc). The CO emission at the most extreme blue and redshifted velocities (EHV) peaks 20 " north of source I, just inside the rings of the HV bullets. The low velocity H2O masers and the H-2* bullets around IRc2 are located at the inner edges of the ring of CO HV bullets and surrounding the EHV CO emission. Furthermore, the high velocity H2O masers are very well correlated with the EHV CO emission. This morphology is consistent with a model of a jet driven molecular outflow oriented close to the line of sight. In the Orion-S outflow, the morphology of the CO HV bullets shows a bipolar structure in the southeast<->northwest direction, and the H2O masers are found only at low velocities in the region between the exciting source and the CO HV bullets. The morphology of the CO HV bullets, the radial velocities and the spatial distribution of the H2O masers in both outflows, as well as the H-2* features around IRc2, are consistent with a model in which these outflows are driven by a jet variable in direction. In this scenario, the large traverse velocity measured for the H2O masers in the IRc2 outflow, similar to 18 km s(-1), supports the evolutionary connection between the jet and the shell-like outflows.
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页码:L57 / L61
页数:5
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