Star Formation Under the Outflow: The Discovery of a Non-Thermal Jet from OMC-2 FIR 3 and its Relationship to the Deeply Embedded FIR 4 Protostar
arXiv:1703.07877 · doi:10.3847/1538-4357/aa6975
Abstract
We carried out multiwavelength (0.7-5 cm), multiepoch (1994-2015) Very Large Array (VLA) observations toward the region enclosing the bright far-IR sources FIR 3 (HOPS 370) and FIR 4 (HOPS 108) in OMC-2. We report the detection of 10 radio sources, seven of them identified as young stellar objects. We image a well-collimated radio jet with a thermal free-free core (VLA 11) associated with the Class I intermediate-mass protostar HOPS 370. The jet presents several knots (VLA 12N, 12C, 12S) of non-thermal radio emission (likely synchrotron from shock-accelerated relativistic electrons) at distances of ~7,500-12,500 au from the protostar, in a region where other shock tracers have been previously identified. These knots are moving away from the HOPS 370 protostar at ~ 100 km/s. The Class 0 protostar HOPS 108, which itself is detected as an independent, kinematically decoupled radio source, falls in the path of these non-thermal radio knots. These results favor the previously proposed scenario where the formation of HOPS 108 has been triggered by the impact of the HOPS 370 outflow with a dense clump. However, HOPS 108 presents a large proper motion velocity of ~ 30 km/s, similar to that of other runaway stars in Orion, whose origin would be puzzling within this scenario. Alternatively, an apparent proper motion could result because of changes in the position of the centroid of the source due to blending with nearby extended emission, variations in the source shape, and /or opacity effects.
16 pages, 4 figures, accepted for publication in The Astrophysical Journal
References in corpus (13)
- The distance to the Orion Nebula
- The Gould's Belt Distances Survey (GOBELINS) II. Distances and structure towards the Orion Molecular Clouds
- The Herschel Orion Protostar Survey: Spectral Energy Distributions and Fits Using a Grid of Protostellar Models
- A Magnetized Jet from a Massive Protostar
- Monitoring the Large Proper Motions of Radio Sources in the Orion BN/KL Region
- Resolving the fragmentation of high line-mass filaments with ALMA: the integral shaped filament in Orion A
- The ALMA View of the OMC1 Explosion in Orion
- Millimeter- and Submillimeter-Wave Observations of the OMC-2/3 Region. III. An Extensive Survey for Molecular Outflows
- Millimeter- and Submillimeter-Wave Observations of the OMC-2/3 Region. II. Observational Evidence for Outflow-Triggered Star Formation in the OMC-2 FIR 3/4 Region
- Radio Measurements of the stellar proper motions in the core of the Orion Nebula Cluster
- The Proper Motions of the Double Radio Source n in the Orion BN/KL Region
- On the nature of the deeply embedded protostar OMC-2 FIR 4
- Herschel/PACS far-IR spectral imaging of a jet from an intermediate mass protostar in the OMC-2 region
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- Radio Jets from Young Stellar Objects
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- The Highly Collimated Radio Jet of HH 80-81: Structure and Non-Thermal Emission
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars V. A Characterization of Protostellar Multiplicity
- Investigating Protostellar Accretion-Driven Outflows Across the Mass Spectrum: JWST NIRSpec IFU 3-5~m Spectral Mapping of Five Young Protostars
- Protostellar Outflows at the EarliesT Stages (POETS). II. A possible radio synchrotron jet associated with the EGO G035.02+0.35
- Magnetically regulated collapse in the B335 protostar? II. Observational constraints on gas ionization and magnetic field coupling
- A Galactic survey of radio jets from massive protostars
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars IV. Unveiling the Embedded Intermediate-Mass Protostar and Disk within OMC2-FIR3/HOPS-370
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars I. Identifying and Characterizing the Protostellar Content of the OMC2-FIR4 and OMC2-FIR3 Regions
- Organic chemistry in the protosolar analogue HOPS-108: Environment matters
- Probing the physics of star formation (ProPStar): I. First resolved maps of the electron fraction and cosmic-ray ionization rate in NGC 1333
- JWST detections of amorphous and crystalline HDO ice toward massive protostars
- Particle acceleration and magnetic field amplification in massive young stellar object jets
- Low Mass Stars as Tracers of Star and Cluster Formation
- ALMA Fragmented Source Catalogue in Orion (FraSCO) I. Outflow interaction within an embedded cluster in OMC-2/FIR3, FIR4, and FIR5
- The double signature of local cosmic-ray acceleration in star-forming regions
- OMC-2 FIR 4 under the microscope: Shocks, filaments, and a highly collimated jet at 100 au scales
- The Herschel Orion Protostar Survey: Far-Infrared Photometry and Colors of Protostars and Their Variations across Orion A and B
- Nobeyama 45-m Mapping Observations toward Orion A. III. Multi-Line Observations toward an Outflow-shocked Region, OMC-2 FIR
- No nitrogen fractionation on 600 au scale in the Sun progenitor analogue OMC-2 FIR4
- Helical Magnetic Field in a Massive Protostellar Jet
- SOLIS XVII: Jet candidate unveiled in OMC-2 and its possible link to the enhanced cosmic-ray ionisation rate
- Mid- CO Line Observations of Protostellar Outflows in the Orion Molecular Clouds
- Seeds of Life in Space (SOLIS). XIII. Nitrogen fractionation towards the protocluster OMC-2 FIR4
- Evidence for protostellar jets as a population of hadronic gamma-ray sources
- Diverse stages of star formation in the IRAS 18162-2048 region. Emergence of UV Feedback