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Title: Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence

Journal Article · · Astronomy and Astrophysics
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Polarized emission observed by Planck HFI at 353 GHz towards a sample of nearby fields is presented, focusing on the statistics of polarization fractions p and angles ψ. The polarization fractions and column densities in these nearby fields are representative of the range of values obtained over the whole sky. We find that: (i) the largest polarization fractions are reached in the most diffuse fields; (ii) the maximum polarization fraction pmax decreases with column density NH in the more opaque fields with NH> 1021 cm-2; and (iii) the polarization fraction along a given line of sight is correlated with the local spatial coherence of the polarization angle. These observations are compared to polarized emission maps computed in simulations of anisotropic magnetohydrodynamical turbulence in which we assume a uniform intrinsic polarization fraction of the dust grains. We find that an estimate of this parameter may be recovered from the maximum polarization fraction pmax in diffuse regions where the magnetic field is ordered on large scales and perpendicular to the line of sight. This emphasizes the impact of anisotropies of the magnetic field on the emerging polarization signal. The decrease of the maximum polarization fraction with column density in nearby molecular clouds is well reproduced in the simulations, indicating that it is essentially due to the turbulent structure of the magnetic field: an accumulation of variously polarized structures along the line of sight leads to such an anti-correlation. In the simulations, polarization fractions are also found to anti-correlate with the angle dispersion function S. However, the dispersion of the polarization angle for a given polarization fraction is found to be larger in the simulations than in the observations, suggesting a shortcoming in the physical content of these numerical models. In summary, we find that the turbulent structure of the magnetic field is able to reproduce the main statistical properties of the dust polarization as observed in a variety of nearby clouds, dense cores excluded, and that the large-scale field orientation with respect to the line of sight plays a major role in the quantitative analysis of these statistical properties.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
Contributing Organization:
Planck Collaboration:
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
1524023
Journal Information:
Astronomy and Astrophysics, Vol. 576; ISSN 0004-6361
Publisher:
EDP SciencesCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 50 works
Citation information provided by
Web of Science

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The supernova-regulated ISM: III. Generation of vorticity, helicity, and mean flows journal March 2018
Cosmological-scale coherent orientations of quasar optical polarization vectors in the Planck era: Investigating the Galactic dust contamination scenario journal February 2019
Dust spectrum and polarisation at 850 μ m in the massive IRDC G035.39-00.33 journal November 2018
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Extreme starlight polarization in a region with highly polarized dust emission journal April 2019
Using Herschel and Planck observations to delineate the role of magnetic fields in molecular cloud structure journal September 2019
IMAGINE: a comprehensive view of the interstellar medium, Galactic magnetic fields and cosmic rays journal August 2018
The magnetic field and dust filaments in the Polaris Flare journal August 2016
Modelling dust polarization observations of molecular clouds through MHD simulations journal December 2017
Magnetic fields in star-forming systems (I): idealized synthetic signatures of dust polarization and Zeeman splitting in filaments journal September 2018
SILCC-Zoom: Polarization and depolarization in molecular clouds journal October 2018
QUIJOTE scientific results – III. Microwave spectrum of intensity and polarization in the Taurus Molecular Cloud complex and L1527 journal December 2018
Effects of grain alignment efficiency on synthetic dust polarization observations of molecular clouds journal September 2019
A new method to trace three-dimensional magnetic field structure within molecular clouds using dust polarization journal March 2019
Submillimeter and Far-Infrared Polarimetric Observations of Magnetic Fields in Star-Forming Regions journal April 2019
Practical Modeling of Large-Scale Galactic Magnetic Fields: Status and Prospects journal April 2019
Synthetic Observations of Magnetic Fields in Protostellar Cores journal January 2017
Polarization Properties and Magnetic Field Structures in the High-mass Star-forming Region W51 Observed with ALMA journal March 2018
Magnetic Fields toward Ophiuchus-B Derived from SCUBA-2 Polarization Measurements journal July 2018
E and B Polarizations from Inhomogeneous and Solar Surface Turbulence journal January 2019
Time Evolution of 3D Disk Formation with Misaligned Magnetic Field and Rotation Axes journal March 2019
The JCMT BISTRO Survey: The Magnetic Field in the Starless Core ρ Ophiuchus C journal May 2019
The JCMT BISTRO Survey: The Magnetic Field of the Barnard 1 Star-forming Region journal May 2019
Dust Polarization Maps from TIGRESS: E/B Power Asymmetry and TE Correlation journal July 2019
An Imprint of the Galactic Magnetic Field in the Diffuse Unpolarized Dust Emission journal December 2019
Mapping the Magnetic Interstellar Medium in Three Dimensions over the Full Sky with Neutral Hydrogen journal December 2019
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Planck 2015 results : XIII. Cosmological parameters journal September 2016
Galactic cold cores: VIII. Filament formation and evolution: Filament properties in context with evolutionary models ⋆ journal May 2017
The supernova-regulated ISM: IV. A comparison of simulated polarization with Planck observations journal June 2018
Galactic cold cores: V. Dust opacity ⋆⋆⋆⋆⋆⋆⋆⋆⋆⋆ journal November 2015
Planck intermediate results : XXIV. Constraints on variations in fundamental constants⋆ journal July 2015
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Planck 2015 results : X. Diffuse component separation: Foreground maps journal September 2016
Planck intermediate results : X. Physics of the hot gas in the Coma cluster journal June 2013
Planck intermediate results : XXIX. All-sky dust modelling with journal February 2016
Planck 2015 results : XVI. Isotropy and statistics of the CMB journal September 2016
Planck 2015 results : XXVI. The Second journal September 2016
Planck intermediate results : XL. The Sunyaev-Zeldovich signal from the Virgo cluster journal December 2016
Planck 2015 results: XX. Constraints on inflation text January 2016
Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes text January 2014
Planck 2015 results. I. Overview of products and scientific results text January 2015
Planck 2015 results. X. Diffuse component separation: Foreground maps text January 2015
Planck 2015 results. XXV. Diffuse low-frequency Galactic foregrounds text January 2015
The magnetic field and dust filaments in the Polaris Flare text January 2016
Modeling Dust Polarization Observations of Molecular Clouds through MHD Simulations text January 2017
Dust models compatible with Planck intensity and polarization data in translucent lines of sight text January 2017
IMAGINE: A comprehensive view of the interstellar medium, Galactic magnetic fields and cosmic rays text January 2018
Magnetic fields in star forming systems (I): Idealized synthetic signatures of dust polarization and Zeeman splitting in filaments text January 2018
Magnetic fields towards Ophiuchus-B derived from SCUBA-2 polarization measurements text January 2018
E and B polarizations from inhomogeneous and solar surface turbulence text January 2018
Dust spectrum and polarisation at 850 um in the massive IRDC G035.39-00.33 text January 2018
Magnetic fields in massive spirals: The role of feedback and initial conditions text January 2018
A New Method to Trace Three-dimensional Magnetic Field Structure within Molecular Clouds Using Dust Polarization text January 2018
Time Evolution of 3D Disk Formation with Misaligned Magnetic Field and Rotation Axes text January 2018
Extreme Starlight Polarization in a Region with Highly Polarized Dust Emission text January 2019
Practical Modeling of Large-Scale Galactic Magnetic Fields: Status and Prospects text January 2019
Effects of Grain Alignment Efficiency on Synthetic Dust Polarization Observations of Molecular Clouds text January 2019
Using Herschel and Planck observations to delineate the role of magnetic fields in molecular cloud structure text January 2019
Mapping the Magnetic Interstellar Medium in Three Dimensions Over the Full Sky with Neutral Hydrogen text January 2019

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