Theoretical Models of Polarized Dust Emission from Protostellar Cores
arXiv:astro-ph/0104231 · doi:10.1086/322504
Abstract
We model the polarized thermal dust emission from protostellar cores that are assembled by super-sonic turbulent flows in molecular clouds. Self-gravitating cores are selected from a three dimensional simulation of super-sonic and super-Alfvenic magneto-hydrodynamic (MHD) turbulence. The polarization is computed in two ways. In model A it is assumed that dust properties and grain alignment efficiency are uniform; in model B it is assumed that grains are not aligned at visual extinction larger than 3 mag. The main results of this work are: i) Values of the degree of polarization P between 1 and 10% are typical, despite the super-Alfvenic nature of the turbulence; ii) A steep decrease of P with increasing values of the sub-mm dust continuum intensity I is always found in self--gravitating cores selected from the MHD simulations, if grains are not aligned above a certain value of visual extinction (model B); iii) The same behavior is hard to reproduce if grains are aligned independently of visual extinction (model A); iv) The Chandrasekhar-Fermi formula, corrected by a factor f=0.4, provides an approximate estimate of the average magnetic field strength in the cores. Sub-mm dust continuum polarization maps of quiescent protostellar cores and Bok globules always show a decrease in P with increasing value of I consistent with the predictions of our model B. We therefore conclude that sub-mm polarization maps of quiescent cores do not map the magnetic field inside the cores at visual extinction larger than approximately 3 mag. There is no inconsistency between the results from optical and near-IR polarized absorption of background stars, and the observed polarization of sub-mm dust continuum from quiescent cores. In both cases, grains at large visual extinction appear to be virtually unaligned.
21 pages, color figures, submitted to ApJ
References in corpus (4)
- Infrared Emission from Interstellar Dust. II. The Diffuse Interstellar Medium
- The Turbulent Shock Origin of Proto--Stellar Cores
- Magnetic Field Diagnostics Based on Far-Infrared Polarimetry: Tests Using Numerical Simulations
- Irregular Magnetic Fields in Interstellar Clouds and the Linear Polarization of Starlight
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- Interstellar Dust Grains
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- Dispersion of Magnetic Fields in Molecular Clouds. I
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- SCUBA Polarization Measurements of the Magnetic Field Strengths in the L183, L1544, and L43 Prestellar Cores
- TADPOL: A 1.3 mm Survey of Dust Polarization in Star-forming Cores and Regions
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- The Formation of Self-Gravitating Cores in Turbulent Magnetized Clouds
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- The Average Magnetic Field Strength in Molecular Clouds: New Evidence of Super-Alfvenic Turbulence
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- Change of Magnetic FieldGas Alignment at Gravity-Driven Alfvénic Transition in Molecular Clouds: Implications for Dust Polarization Observations
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- Submillimeter Array Observations of Magnetic Fields in G240.31+0.07: an Hourglass in a Massive Cluster-forming Core
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- Magnetic Fields in Star-Forming Molecular Clouds III. Submillimeter Polarimetry of Intermediate Mass Cores and Filaments in Orion B
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- Near-Infrared Imaging Polarimetry of the Serpens Cloud Core: Magnetic Field Structure, Outflows, and Inflows in A Cluster Forming Clump
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