Balloon-Borne Submillimeter Polarimetry of the Vela C Molecular Cloud: Systematic Dependence of Polarization Fraction on Column Density and Local Polarization-Angle Dispersion
arXiv:1509.05298 · doi:10.3847/0004-637X/824/2/134
Abstract
We present results for Vela C obtained during the 2012 flight of the Balloon-borne Large Aperture Submillimeter Telescope for Polarimetry (BLASTPol). We mapped polarized intensity across almost the entire extent of this giant molecular cloud, in bands centered at 250, 350, and 500 μm. In this initial paper, we show our 500 μm data smoothed to a resolution of 2.5 arcminutes (approximately 0.5 pc). We show that the mean level of the fractional polarization p and most of its spatial variations can be accounted for using an empirical three-parameter power-law fit, p = p_0 N^(-0.4) S^(-0.6), where N is the hydrogen column density and S is the polarization-angle dispersion on 0.5 pc scales. The decrease of p with increasing S is expected because changes in the magnetic field direction within the cloud volume sampled by each measurement will lead to cancellation of polarization signals. The decrease of p with increasing N might be caused by the same effect, if magnetic field disorder increases for high column density sightlines. Alternatively, the intrinsic polarization efficiency of the dust grain population might be lower for material along higher density sightlines. We find no significant correlation between N and S. Comparison of observed submillimeter polarization maps with synthetic polarization maps derived from numerical simulations provides a promising method for testing star formation theories. Realistic simulations should allow for the possibility of variable intrinsic polarization efficiency. The measured levels of correlation among p, N, and S provide points of comparison between observations and simulations.
24 pages, 20 figures, and 2 tables. Accepted for publication in ApJ. Updated from originally submitted version
References in corpus (17)
- Theory of Star Formation
- Radiative torques: Analytical Model and Basic Properties
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- Planck intermediate results. XXXV. Probing the role of the magnetic field in the formation of structure in molecular clouds
- Tracing Magnetic Fields with Aligned Grains
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence
- The Efficiency of Grain Alignment in Dense Interstellar Clouds: A Reassessment of Constraints from Near Infrared Polarization
- The Balloon-borne Large Aperture Submillimeter Telescope: BLAST
- On the radiation driven alignment of dust grains: Detection of the polarization hole in a starless core
- Grain Alignment in Starless Cores
- Results of SPARO 2003: Mapping Magnetic Fields in Giant Molecular Clouds
- Polarization measurements analysis I. Impact of the full covariance matrix on polarization fraction and angle measurements
- The Magnetic Field of Cloud 3 in L204
- Spectral energy distribution modelling of Southern candidate massive protostars using the Bayesian inference method
- Dispersion of Observed Position Angles of Submillimeter Polarization in Molecular Clouds
Cited by in corpus (95)
- Planck 2018 results. XII. Galactic astrophysics using polarized dust emission
- First results from BISTRO -- a SCUBA-2 polarimeter survey of the Gould Belt
- Tracing magnetic fields with spectroscopic channel maps
- Interferometric observations of magnetic fields in forming stars
- HAWC+/SOFIA Multiwavelength Polarimetric Observations of OMC-1
- On the relation between the column density structures and the magnetic field orientation in the Vela C molecular complex
- Mapping the Magnetic Interstellar Medium in Three Dimensions Over the Full Sky with Neutral Hydrogen
- ALMA observations of dust polarization and molecular line emission from the Class 0 protostellar source Serpens SMM1
- CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope
- Dust models compatible with Planck intensity and polarization data in translucent lines of sight
- Submillimeter and Far-Infrared Polarimetric Observations of Magnetic Fields in Star-Forming Regions
- Change of Magnetic FieldGas Alignment at Gravity-Driven Alfvénic Transition in Molecular Clouds: Implications for Dust Polarization Observations
- The Green Bank Ammonia Survey: Dense Cores Under Pressure in Orion A
- An application of an optimal statistic for characterising relative orientations
- From parallel to perpendicular -- On the orientation of magnetic fields in molecular clouds
- Relative Alignment Between the Magnetic Field and Molecular Gas Structure in the Vela C Giant Molecular Cloud using Low and High Density Tracers
- A First Look at BISTRO Observations of The Oph-A core
- Zooming in on Individual Star Formation: Low- and High-mass Stars
- The JCMT BISTRO Survey: The Magnetic Field of the Barnard 1 Star-Forming Region
- Dense gas kinematics and a narrow filament in the Orion A OMC1 region using NH3
- Polarization Properties and Magnetic Field Structures in the High-Mass Star-Forming Region W51 Observed with ALMA
- SILCC-Zoom: Polarisation and depolarisation in molecular clouds
- The far-infrared polarization spectrum of Rho Ophiuchi A from HAWC+/SOFIA observations
- Does HL Tau Disk Polarization in ALMA Band 3 Come from Radiatively Aligned Grains?
- 3D magnetic field morphology of the Perseus molecular cloud
- A statistical analysis of dust polarization properties in ALMA observations of Class 0 protostellar cores
- Statistical description of dust polarized emission from the diffuse interstellar medium -- A RWST approach
- Magnetically Dominated Parallel Interstellar Filaments at the Infrared Dark Cloud G14.225-0.506
- Modeling Dust Polarization Observations of Molecular Clouds through MHD Simulations
- Extragalactic Magnetism with SOFIA (Legacy Program) -- I: The magnetic field in the multi-phase interstellar medium of M51
- First Observation of the Submillimeter Polarization Spectrum in a Translucent Molecular Cloud
- Magnetized converging flows towards the hot core in the intermediate/high-mass star-forming region NGC 6334 V
- Orion A's complete 3D magnetic field morphology
- Dust spectrum and polarisation at 850 um in the massive IRDC G035.39-00.33
- A New Method to Trace Three-dimensional Magnetic Field Structure within Molecular Clouds Using Dust Polarization
- Curvature of magnetic field lines in compressible magnetized turbulence: Statistics, magnetization predictions, gradient curvature, modes and self-gravitating media
- The Simons Observatory: Galactic Science Goals and Forecasts
- Maps of Magnetic Field Strength in the OMC-1 using HAWC+ FIR Polarimetric data
- Magnetic Field Structure in Spheroidal Star-Forming Clouds
- Probing the cold magnetized Universe with SPICA-POL (B-BOP)
- Producing Synthetic Maps of Dust Polarization using Velocity Channel Gradient Technique
- SOFIA/HAWC+ Far-InfraRed Polarimetric Large Area CMZ Exploration (FIREPLACE) Survey I: General Results from the Pilot Program
- Tracing magnetic field morphology using the Velocity Gradient Technique in the presence of CO self-absorption
- Understanding polarized dust emission from Ophiuchi A in light of grain alignment and disruption by radiative torques
- The Davis-Chandrasekhar-Fermi Method Revisited
- Tracing Multi-Scale Magnetic Field Structure Using Multiple Chemical Tracers in Giant Molecular Clouds
- The SOFIA FEEDBACK Legacy Survey: Dynamics and mass ejection in the bipolar HII region RCW 36
- JCMT BISTRO Observations: Magnetic Field Morphology of Bubbles Associated with NGC 6334
- An Imprint of the Galactic Magnetic Field in the Diffuse Unpolarized Dust Emission
- Mapping of the structure of the galactic magnetic field with velocity gradients: Test using star light polarization
- Magnetic Field Orientation in Self-Gravitating Turbulent Molecular Clouds
- Dense cores and star formation in the giant molecular cloud Vela~C
- The JCMT BISTRO Survey: An 850/450m Polarization Study of NGC 2071IR in OrionB
- Formation of the SDC13 Hub-Filament System: A Cloud-Cloud Collision Imprinted on The Multiscale Magnetic Field
- Study Turbulence and Probe Magnetic Field Using Gradients Technique: Application to HI-to-H2 Transition Regions
- Submillimeter Polarization Spectrum of the Carina Nebula
- SOFIA/HAWC+ Far-Infrared Polarimetric Large-Area CMZ Exploration (FIREPLACE) Survey III: Full Survey Data Set
- HAWC+/SOFIA Polarimetry in L1688: Relative Orientation of Magnetic Field and Elongated Cloud Structure
- SOFIA observations of 30 Doradus: I -- Far-Infrared dust polarization and implications for grain alignment and disruption by radiative torques
- The seven most massive clumps in W43-Main as seen by ALMA: Dynamical equilibrium and Magnetic Fields
- Characterizing the accuracy of ALMA linear-polarization mosaics
- Effects of Grain Alignment Efficiency on Synthetic Dust Polarization Observations of Molecular Clouds
- Relative Alignment between Dense Molecular Cores and Ambient Magnetic Field: The Synergy of Numerical Models and Observations
- Comparing submillimeter polarized emission with near-infrared polarization of background stars for the Vela C molecular cloud
- A Multi-Scale Picture of Magnetic Field and Gravity from Large-Scale Filamentary Envelope to Core-Accreting Dust Lanes in the High-Mass Star-Forming Region W51
- HAWC+ Far-Infrared Observations of the Magnetic Field Geometry in M51 and NGC 891
- Anomalous compressible mode generation by global frame projections of pure Alfven mode
- Far-Infrared Polarization Spectrum of the OMC-1 Star-Forming Region
- Probing Three-Dimensional Magnetic Fields: I -- Polarized Dust Emission
- On the statistics of the polarized submillimetre emission maps from thermal dust in the turbulent, magnetized, diffuse ISM
- Three-dimensional magnetic fields of molecular clouds
- Preflight Characterization of the BLAST-TNG Receiver and Detector Arrays
- Alignment of dense molecular core morphology and velocity gradients with ambient magnetic fields
- Characterising the Magnetic Fields of Nearby Molecular Clouds using Submillimeter Polarization Observations
- The Role of Magnetic Fields in the Stability and Fragmentation of Filamentary Molecular Clouds: Two Case Studies at OMC-3 and OMC-4
- Design and Characterization of a Balloon-Borne Diffraction-Limited Submillimeter Telescope Platform for BLAST-TNG
- On Far-Infrared and Submm Circular Polarization
- On the 3D Curvature and Dynamics of the Musca filament
- Removing visual bias in filament identification: a new goodness-of-fit measure
- Synthetic observations of dust emission and polarisation of Galactic cold clumps
- Star Formation in a Strongly Magnetized Cloud
- Neutral hydrogen filaments in interstellar media: Are they physical?
- The origin of dust polarization in the Orion Bar
- Magnetic field measurement from the Davis-Chandrasekhar-Fermi method employed with Atomic Alignment
- SOFIA and ALMA Investigate Magnetic Fields and Gas Structures in Massive Star Formation: The Case of the Masquerading Monster in BYF 73
- The BLAST Observatory: A Sensitivity Study for Far-IR Balloon-borne Polarimeters
- Sensitivity of Polarization to Grain Shape: II. Aggregates
- Magnetic field structure of the Galactic plane from differential analysis of interstellar polarization
- Diagnostics of magnetohydrodynamic modes in the ISM through synchrotron polarization statistics
- Measuring filament orientation: a new quantitative, local approach
- Limitations of the modified blackbody fit method for determining molecular cloud properties
- SOFIA Polarization Spectrum of Three Star-Forming Clouds
- Analysis of Galactic molecular cloud polarization maps: a review of the methods
- Magnetic field alignment with dense cores in the transition between cloud and core scales
- Interstellar filament detection and characterization: methods and implications for studies of magnetized interstellar medium