Results of SPARO 2003: Mapping Magnetic Fields in Giant Molecular Clouds
arXiv:astro-ph/0602455 · doi:10.1086/505858
Abstract
We present results from the Austral Winter 2003 observing campaign of SPARO, a 450 micron polarimeter used with a two-meter telescope at South Pole. We mapped large-scale magnetic fields in four Giant Molecular Clouds (GMCs) in the Galactic disk: NGC 6334, the Carina Nebula, G333.6-0.2 and G331.5-0.1. We find a statistically significant correlation of the inferred field directions with the orientation of the Galactic plane. Specifically, three of the four GMCs (NGC 6334 is the exception) have mean field directions that are within 15 degrees of the plane. The simplest interpretation is that the field direction tends to be preserved during the process of GMC formation. We have also carried out an analysis of published optical polarimetry data. For the closest of the SPARO GMCs, NGC 6334, we can compare the field direction in the cloud as measured by SPARO with the field direction in a larger region surrounding the cloud, as determined from optical polarimetry. For purposes of comparison, we also use optical polarimetry to determine field directions for other regions of similar size and distance. Overall, the results from this optical polarimetry analysis are consistent with our suggestion that field direction tends to be preserved during GMC formation. Finally, we compare the disorder in our magnetic field maps with the disorder seen in magnetic field maps derived from MHD turbulence simulations. We conclude from these comparisons that the magnetic energy density in our clouds is comparable to the turbulent energy density.
Submitted to Astrophys. J. (one color figure)
Cited by in corpus (19)
- Theory of Star Formation
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- Star Formation Efficiency and Dispersal of Giant Molecular Clouds with UV Radiation Feedback: Dependence on Gravitational Boundedness and Magnetic Fields
- Interferometric observations of magnetic fields in forming stars
- ALMA observations of dust polarization and molecular line emission from the Class 0 protostellar source Serpens SMM1
- The Galactic Positron Annihilation Radiation & The Propagation of Positrons in the Interstellar Medium
- Gaia EDR3 Reveals the Substructure and Complicated Star Formation History of the Greater Taurus-Auriga Star Forming Complex
- Submillimeter and Far-Infrared Polarimetric Observations of Magnetic Fields in Star-Forming Regions
- Dust polarized emission observations of NGC 6334; BISTRO reveals the details of the complex but organized magnetic field structure of the high-mass star-forming hub-filament network
- The Next Generation BLAST Experiment
- Magnetic fields and the dynamics of spiral galaxies
- Magnetic Fields in Massive Star-Forming Regions (MagMaR) II. Tomography Through Dust and Molecular Line Polarization in NGC 6334I(N)
- Revealing the diverse magnetic field morphologies in Taurus dense cores with sensitive sub-millimeter polarimetry
- Magnetic structure of our Galaxy: A review of observations
- The Link between Magnetic-field Orientations and Star Formation Rates
- Dispersion of Observed Position Angles of Submillimeter Polarization in Molecular Clouds
- Testing Magnetic Field Models for the Class 0 Protostar L1527
- The Balloon-borne Large-Aperture Submillimeter Telescope for Polarization: BLAST-pol
- Magnetic fields of our Galaxy on large and small scales