SiO collimated outflows driven by high-mass YSOs in G24.78+0.08
arXiv:1212.0473 · doi:10.1051/0004-6361/201219900
Abstract
We imaged the molecular outflows towards the cluster of high-mass young stellar objects G24.78+0.08 at high-angular resolution using SiO emission, which is considered the classical tracer of protostellar jets. We performed SiO observations with the VLA interferometer in the J = 1-0 v=0 transition and with the SMA array in the 5-4 transition. A complementary IRAM 30-m single-dish survey in the (2-1), (3-2), (5-4), and (6-5) SiO lines was also carried out. Two collimated SiO high-velocity outflows driven by the A2 and C millimeter continuum massive cores have been imaged. On the other hand, we detected no SiO outflow driven by the young stellar objects in more evolved evolutionary phases that are associated with ultracompact (B) or hypercompact (A1) HII regions. The LVG analysis reveals high-density gas (10^3-10^4 cm-3), with well constrained SiO column densities (0.5-1 10^15 cm-2). The driving source of the A2 outflow is associated with typical hot core tracers such as methyl formate, vinyl cyanide, cyanoacetilene, and acetone. The driving source of the main SiO outflow in G24 has an estimated luminosity of a few 10^4 Lsun (typical of a late O-type star) and is embedded in the 1.3 mm continuum core A2, which in turn is located at the centre of a hot core that rotates on a plane perpendicular to the outflow main axis. The present SiO images support a scenario similar to the low-mass case for massive star formation, where jets that are clearly traced by SiO emission, create outflows of swept-up ambient gas usually traced by CO.
Astronomy & Astrophysics, in press
References in corpus (9)
- SiO line emission from C-type shock waves : interstellar jets and outflows
- Infall of gas as the formation mechanism of stars up to 20 times more massive than the Sun
- A highly-collimated SiO jet in the HH212 protostellar outflow
- PdBI sub-arcsecond study of the SiO microjet in HH212 - Origin and collimation of Class 0 jets
- Submillimeter arcsecond-resolution mapping of the highly collimated protostellar jet HH 211
- HH 212: SMA Observations of a Remarkable Protostellar Jet
- A Jet-like Outflow toward the High-Mass (Proto)stellar Object IRAS 18566+0408
- High Resolution Imaging of Molecular Outflows in Massive Young Stars
- The hyperyoung HII region in G24.78+0.08 A1
Cited by in corpus (23)
- Radio Jets from Young Stellar Objects
- Evolution and excitation conditions of outflows in high-mass star-forming regions
- Accelerating infall and rotational spin-up in the hot molecular core G31.41+0.31
- The ALMA Survey of 70 Dark High-mass Clumps in Early Stages (ASHES). II: Molecular Outflows in the Extreme Early Stages of Protocluster Formation
- A population of hypercompact HII regions identified from young HII regions
- A Survey of Extended H Emission from Massive YSOs
- A SiO J = 5 - 4 Survey Toward Massive Star Formation Regions
- Multiple monopolar outflows driven by massive protostars in IRAS 18162-2048
- A high resolution study of complex organic molecules in hot cores
- Evidence of a SiO collimated outflow from a massive YSO in IRAS 17233-3606
- EVN observations of 6.7 GHz methanol maser polarization in massive star-forming regions III. The flux-limited sample
- Submillimeter Array Observations of NGC 2264-C: Molecular Outflows and Driving Sources
- Identification of Methyl Isocyanate and Other Complex Organic Molecules in a Hot Molecular Core, G31.41+0.31
- The sharp ALMA view of infall and outflow in the massive protocluster G31.41+0.31
- Complex molecules in W51 North region
- Planck Cold Clumps in the lambda Orionis Complex. III. A chemical probe of stellar feedback on cores in the lambda Orionis cloud
- SiO: Not the perfect outflow tracer: Outflow studies of the massive star formation region IRAS 19410+2336
- Multiwavelength investigation of extended green object G19.88-0.53: Revealing a protocluster
- Isolated Massive Star Formation in G28.20-0.05
- Illuminating a tadpole's metamorphosis II: observing the on-going transformation with ALMA
- Multiple outflows in the high-mass cluster forming region, G25.82-0.17
- Interstellar Complex Organic Molecules in SiO-traced massive outflows
- Studying star-forming processes at core and clump scales: the case of the young stellar object G29.862-0.0044