Statistical Assessment of Shapes and Magnetic Field Orientations in Molecular Clouds through Polarization Observations
arXiv:0907.3730 · doi:10.1111/j.1365-2966.2009.15420.x
Abstract
We present a novel statistical analysis aimed at deriving the intrinsic shapes and magnetic field orientations of molecular clouds using dust emission and polarization observations by the Hertz polarimeter. Our observables are the aspect ratio of the projected plane-of-the-sky cloud image, and the angle between the mean direction of the plane-of-the-sky component of the magnetic field and the short axis of the cloud image. To overcome projection effects due to the unknown orientation of the line-of-sight, we combine observations from 24 clouds, assuming that line-of-sight orientations are random and all are equally probable. Through a weighted least-squares analysis, we find that the best-fit intrinsic cloud shape describing our sample is an oblate disk with only small degrees of triaxiality. The best-fit intrinsic magnetic field orientation is close to the direction of the shortest cloud axis, with small (~24 deg) deviations toward the long/middle cloud axes. However, due to the small number of observed clouds, the power of our analysis to reject alternative configurations is limited.
14 pages, 8 figures, accepted for publication in MNRAS
References in corpus (7)
- Tracing Magnetic Fields with Aligned Grains
- Magnetic Fields in the Formation of Sun-Like Stars
- Placing Confidence Limits on Polarization Measurements
- Radiative torque alignment: Essential Physical Processes
- On the Structure of the Orion A Cloud and the Formation of the Orion Nebula Cluster
- Magnetic fields in massive star forming regions
- The Shapes of Molecular Cloud Cores in Orion
Cited by in corpus (39)
- Planck intermediate results. XXXV. Probing the role of the magnetic field in the formation of structure in molecular clouds
- An Imprint of Molecular Cloud Magnetization in the Morphology of the Dust Polarized Emission
- TADPOL: A 1.3 mm Survey of Dust Polarization in Star-forming Cores and Regions
- Magnetic Fields and Massive Star Formation
- The Link between Magnetic Fields and Filamentary Clouds: Bimodal Cloud Orientations in the Gould Belt
- 350 micron Polarimetry from the Caltech Submillimeter Observatory
- Magnetization of cloud cores and envelopes and other observational consequences of reconnection diffusion
- Submillimeter and Far-Infrared Polarimetric Observations of Magnetic Fields in Star-Forming Regions
- Disk Formation Enabled by Enhanced Resistivity
- Relative Alignment Between the Magnetic Field and Molecular Gas Structure in the Vela C Giant Molecular Cloud using Low and High Density Tracers
- Magnetic Field Structure around Low-Mass Class 0 Protostars: B335, L1527 and IC348-SMM2
- Planck intermediate results. XXXII. The relative orientation between the magnetic field and structures traced by interstellar dust
- The Importance of the Magnetic Field from an SMA-CSO-Combined Sample of Star-Forming Regions
- Lupus I Observations from the 2010 Flight of the Balloon-borne Large Aperture Submillimeter Telescope for Polarimetry
- From Poloidal to Toroidal: Detection of Well-ordered Magnetic Field in High-mass Proto-cluster G35.2-0.74N
- A quantification of the non-spherical geometry and accretion of collapsing cores
- Magnetic Seismology of Interstellar Gas Clouds: Unveiling a Hidden Dimension
- Magnetically Dominated Parallel Interstellar Filaments at the Infrared Dark Cloud G14.225-0.506
- Statistical analysis of the interplay between magnetic fields and filaments hosting Planck Galactic Cold Clumps
- The properties of SCUBA cores in the Perseus molecular cloud: the bias of clump-finding algorithms
- Interpreting the Role of the Magnetic Field from Dust Polarization Maps
- The balloon-borne large-aperture submillimeter telescope for polarimetry: BLAST-Pol
- Evidence for Dynamically Important Magnetic Fields in Molecular Clouds
- HAWC+/SOFIA Polarimetry in L1688: Relative Orientation of Magnetic Field and Elongated Cloud Structure
- Dynamics of the Parker-Jeans instability of gaseous disks including the effect of cosmic rays
- The Balloon-borne Large-Aperture Submillimeter Telescope for Polarization: BLAST-pol
- Comparison of Prestellar Core Elongations and Large-Scale Molecular Cloud Structures in the Lupus I Region
- Chemistry as a diagnostic of prestellar core geometry
- HI-H transition: exploring the role of the magnetic field
- Filamentary Star Formation: Observing the Evolution toward Flattened Envelopes
- Magnetic field generation in galactic molecular clouds
- Detecting the Elusive Blazar Counter-Jets
- Relative alignment between gas structures and magnetic field in Orion A at different scales using different molecular gas tracers
- Core orientations and magnetic fields in isolated molecular clouds
- The Musca molecular cloud: The perfect "filament" is still a sheet
- Core formation via filament fragmentation and the impact of ambient pressure on it
- Non-similar collapse of singular isothermal spherical molecular cloud cores with nonzero initial velocities
- A Survey of Magnetic Field Properties in Bok Globules
- The dominance of turbulence over magnetism in the formation of massive star cluster seeds