Evolution of Magnetic Fields in High Mass Star Formation: SMA dust polarization image of the UCHII region G5.89-0.39
arXiv:0812.3444 · doi:10.1088/0004-637X/695/2/1399
Abstract
We report high angular resolution (3") Submillimeter Array (SMA) observations of the molecular cloud associated with the Ultra-Compact HII region G5.89-0.39. Imaged dust continuum emission at 870 micron reveals significant linear polarization. The position angles (PAs) of the polarization vary enormously but smoothly in a region of 2x10^4 AU. Based on the distribution of the PAs and the associated structures, the polarized emission can be separated roughly into two components. The component "x" is associated with a well defined dust ridge at 870 micron, and is likely tracing a compressed B field. The component "o" is located at the periphery of the dust ridge and is probably from the original B field associated with a pre-existing extended structure. The global B field morphology in G5.89, as inferred from the PAs, is clearly disturbed by the expansion of the HII region and the molecular outflows. Using the Chandrasekhar-Fermi method, we estimate from the smoothness of the field structures that the B field strength in the plane of sky can be no more than 2-3 mG. We then compare the energy densities in the radiation, the B field, and the mechanical motions as deduced from the C^17O 3-2 line emission. We conclude that the B field structures are already overwhelmed and dominated by the radiation, outflows, and turbulence from the newly formed massive stars.
35 pages, 8 figures. Accepted by ApJ
References in corpus (18)
- Interstellar Turbulence I: Observations and Processes
- The Submillimeter Array
- Radiative torques: Analytical Model and Basic Properties
- Tracing Magnetic Fields with Aligned Grains
- Magnetic Fields in the Formation of Sun-Like Stars
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- Magnetohydronamic Evolution of HII Regions in Molecular Clouds: Simulation Methodology, Tests, and Uniform Media
- Full-Polarization Observations of OH Masers in Massive Star-Forming Regions: I. Data
- Magnetic fields in massive star forming regions
- Subarcsecond Submillimeter Imaging of the Ultracompact HII Region G5.89-0.39
- Line Polarization of Molecular Lines at Radio Frequencies: The case of DR21(OH)
- The Submillimeter Array Polarimeter
- Mapping the Outflow from G5.89-0.39 in SiO(5-4)
- Interferometric mapping of Magnetic fields: G30.79 FIR 10
- Polarized dust emission of magnetized molecular cloud cores
- Interferometric Mapping of Magnetic Fields: The massive star forming region G34.4+0.23 MM
- Interferometric Mapping of Magnetic fields: NGC2071IR
- VLBA Observations of G5.89-0.39: OH masers and magnetic field structure
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