A search for non-thermal radio emission from jets of massive young stellar objects
arXiv:1904.04880 · doi:10.1093/mnras/stz1091
Abstract
Massive young stellar objects (MYSOs) have recently been shown to drive jets whose particles can interact with either the magnetic fields of the jet or ambient medium to emit non-thermal radiation. We report a search for non-thermal radio emission from a sample of 15 MYSOs to establish the prevalence of the emission in the objects. We used their spectra across the L-, C- and Q-bands along with spectral index maps to characterise their emission. We find that about 50% of the sources show evidence for non-thermal emission with 40% showing clear non-thermal lobes, especially sources of higher bolometric luminosity. The common or IRAS names of the sources that manifest non-thermal lobes are; V645Cyg, IRAS 22134+5834, NGC 7538 IRS 9, IRAS 23262+640, AFGL 402d and AFGL 490. All the central cores of the sources are thermal with corresponding mass-loss rates that lie in the range 3X10^{-7} to 7X10^{-6} solar masses per year. Given the presence of non-thermal lobes in some of the sources and the evidence of non-thermal emission from some spectral index maps, it seems that magnetic fields play a significant role in the jets of massive protostars. Also noted is that some of the sources show evidence of binarity and variability.
Accepted for publication in MNRAS
References in corpus (24)
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- The UKIDSS Galactic Plane Survey
- A Magnetized Jet from a Massive Protostar
- A hot compact dust disk around a massive young stellar object
- On the existence of accretion-driven bursts in massive star formation
- VLA observations of ammonia in high-mass star formation regions
- Weak and Compact Radio Emission in Early High-Mass Star Forming Regions: I. VLA Observations
- Protostellar Outflows and Radiative Feedback from Massive Stars
- Highly Collimated Jets and Wide-Angle Outflows in HH46/47: New Evidence from Spitzer IR Images
- Resolved 24.5 micron emission from massive young stellar objects
- A String of Radio Emission Associated with IRAS 16562-3959: A Collimated Jet Emanating from a Luminous Massive YSO
- Search for ionized jets towards high-mass young stellar objects
- The Highly Collimated Radio Jet of HH 80-81: Structure and Non-Thermal Emission
- Survey of intermediate/high-mass star-forming regions at centimeter and millimeter wavelengths
- An equatorial wind from the massive young stellar object S140 IRS 1
- The Detection and Characterization of cm Radio Continuum Emission from the Low-mass Protostar L1014-IRS
- Accretion disks around massive stars: Hydrodynamic structure, stability and dust sublimation
- Medium resolution near-infrared spectroscopy of Massive Young Stellar Objects
- Detection of non-thermal emission from the massive protostellar jet HH80-81 at low radio frequencies using GMRT
- MHOs toward HMOs: A Search for Molecular Hydrogen emission-line Objects toward High-Mass Outflows
- Time-monitoring Observations of Br Emission from Young Stars
- Proper motions of radiative knots in simulations of stellar jets - An alternative to pulsating inflow conditions
- The Luminosity of Population III Star Clusters
- Submillimeter/millimeter observations of the high-mass star forming region IRAS 22506+5944
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- Star-Gas Surface Density Correlations in Twelve Nearby Molecular Clouds I: Data Collection and Star-Sampled Analysis
- A Galactic survey of radio jets from massive protostars
- Parameter study for the burst mode of accretion in massive star formation
- Particle acceleration and magnetic field amplification in massive young stellar object jets
- Zooming into the Collimation Zone in a Massive Protostellar Jet
- Multiwavelength investigation of extended green object G19.88-0.53: Revealing a protocluster
- A Multi-Epoch Study of Radio Continuum Emission from MassiveProtostars
- The physical and chemical structure of high-mass star-forming regions. Unraveling chemical complexity with the NOEMA large program "CORE"
- Proper Motions of Water Masers in the Star-forming Region IRAS 23139+5939