EVN observations of 6.7 GHz methanol maser polarization in massive star-forming regions
arXiv:1203.4566 · doi:10.1051/0004-6361/201118658
Abstract
The role of magnetic fields in the formation of high-mass stars is still under debate, and recent measurements of their orientation and strength by using polarized maser emissions are contributing new insights. Masers polarization, in particular of the 6.7-GHz methanol masers, are one of the best probes of the magnetic field morphologies around massive protostars. Determining the magnetic field morphology around an increasing number of massive protostars at milliarcsecond resolution by observing 6.7-GHz methanol masers is crucial to better understand the role of magnetic fields in massive star formation.The First EVN Group consists of 4 massive star-forming complexes: W51, W48, IRAS18556+0138, and W3(OH). These contain well-studied \hii ~regions from some of which molecular bipolar outflows were also detected (W51-e2, G35.20-0.74N). Nine of the European VLBI Network antennas were used to measure the linear polarization and Zeeman-splitting of the 6.7-GHz methanol masers in the star-forming regions of the First EVN Group. We detected a total of 154 CH3OH masers, one third of these towards W3(OH). Fractional linear polarization (1.2-11.5%) was detected towards 55 masers. The linear polarization vectors are well-ordered in all the massive star-forming regions. We measured significant Zeeman-splitting in 3 massive star-forming regions (W51, W48, and W3(OH)) revealing a range of separations -3.5 m/s<ΔV_{z}<3.8 m/s with the smallest |ΔV_{z}|=0.4m/s. We were also able to compare our magnetic field results with those obtained from submillimeter wavelength dust observation in W51 and show that the magnetic field at low and high resolutions are in perfect agreement.
15 pages, 11 figures, 5 tables, accepted by Astronomy & Astrophysics
References in corpus (14)
- Radio observational constraints on Galactic 3D-emission models
- Trigonometric Parallax of W51 Main/South
- Evolution of Magnetic Fields in High Mass Star Formation: Linking field geometry and collapse for the W51 e2/e8 cores
- Full-Polarization Observations of OH Masers in Massive Star-Forming Regions: II. Maser Properties and the Interpretation of Polarization
- A new probe of magnetic fields during high-mass star formation: Zeeman splitting of 6.7 GHz methanol masers
- The Remarkable Mid-Infrared Jet of Massive Young Stellar Object G35.20-0.74
- High-Angular Resolution Dust Polarization Measurements: Shaped B-field Lines in the Massive Star Forming Region Orion BN/KL
- The structure of the magnetic field in the massive star-forming region W75N
- The Ionization of Accretion Flows in High Mass Star Formation: W51e2
- Methanol Maser Polarization in W3(OH)
- The properties and polarization of the H2O and CH3OH maser environment of NGC7538-IRS1
- Dynamics of the 6.7 and 12.2 GHz methanol masers around Cepheus A HW2
- A CO Line and Infrared Continuum Study of the Active Star-Forming Complex W51
- Magnetic Field Properties in High Mass Star Formation from Large to Small Scales - A Statistical Analysis from Polarization Data
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