Published December 2016 | Version Published + Submitted
Journal Article Open

Planck intermediate results. XLIV. Structure of the Galactic magnetic field from dust polarization maps of the southern Galactic cap

Abstract

Using data from the Planck satellite, we study the statistical properties of interstellar dust polarization at high Galactic latitudes around the south pole (b < −60°). Our aim is to advance the understanding of the magnetized interstellar medium (ISM), and to provide a modelling framework of the polarized dust foreground for use in cosmic microwave background (CMB) component-separation procedures. We examine the Stokes I, Q, and U maps at 353 GHz, and particularly the statistical distribution of the polarization fraction (p) and angle (ψ), in order to characterize the ordered and turbulent components of the Galactic magnetic field (GMF) in the solar neighbourhood. The Q and U maps show patterns at large angular scales, which we relate to the mean orientation of the GMF towards Galactic coordinates (l_0,b_0) = (70° ± 5°,24° ± 5°). The histogram of the observed p values shows a wide dispersion up to 25%. The histogram of ψ has a standard deviation of 12° about the regular pattern expected from the ordered GMF. We build a phenomenological model that connects the distributions of p and ψ to a statistical description of the turbulent component of the GMF, assuming a uniform effective polarization fraction (p_0) of dust emission. To compute the Stokes parameters, we approximate the integration along the line of sight (LOS) as a sum over a set of N independent polarization layers, in each of which the turbulent component of the GMF is obtained from Gaussian realizations of a power-law power spectrum. We are able to reproduce the observed p and ψ distributions using a p0 value of 26%, a ratio of 0.9 between the strengths of the turbulent and mean components of the GMF, and a small value of N. The mean value of p (inferred from the fit of the large-scale patterns in the Stokes maps) is 12 ± 1%. We relate the polarization layers to the density structure and to the correlation length of the GMF along the LOS. We emphasize the simplicity of our model (involving only a few parameters), which can be easily computed on the celestial sphere to produce simulated maps of dust polarization. Our work is an important step towards a model that can be used to assess the accuracy of component-separation methods in present and future CMB experiments designed to search the B mode CMB polarization from primordial gravity waves.

Additional Information

© 2016 ESO. Article published by EDP Sciences. Received 4 April 2016; Accepted 13 July 2016; Published online 12 December 2016. The Planck Collaboration acknowledges the support of: ESA; CNES, and CNRS/INSU-IN2P3-INP (France); ASI, CNR, and INAF (Italy); NASA and DoE (USA); STFC and UKSA (UK); CSIC, MINECO, JA, and RES (Spain); Tekes, AoF, and CSC (Finland); DLR and MPG (Germany); CSA (Canada); DTU Space (Denmark); SER/SSO (Switzerland); RCN (Norway); SFI (Ireland); FCT/MCTES (Portugal); ERC and PRACE (EU). A description of the Planck Collaboration and a list of its members, indicating which technical or scientific activities they have been involved in, can be found at http://www.cosmos.esa.int/web/planck/planckcollaboration. The research leading to these results has received funding from the European Research Council under the European Union's Seventh Framework Programme (FP7/2007–2013)/ERC grant agreement No. 267934.

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Additional details

Identifiers

Eprint ID
96870
Resolver ID
CaltechAUTHORS:20190701-141615396

Related works

Funding

European Space Agency (ESA)
Centre National d'Études Spatiales (CNES)
Centre National de la Recherche Scientifique (CNRS)
Institut National des Sciences de l'Univers (INSU)
Agenzia Spaziale Italiana (ASI)
Consiglio Nazionale delle Ricerche (CNR)
Istituto Nazionale di Astrofisica (INAF)
NASA
Department of Energy (DOE)
Science and Technology Facilities Council (STFC)
United Kingdom Space Agency (UKSA)
Consejo Superior de Investigaciones Científicas (CSIC)
Ministerio de Economía, Industria y Competitividad (MINECO)
Junta de Andalucía
Spanish Supercomputing Network (RES)
Finnish Ministry of Employment and the Economy
Academy of Finland
Finnish IT Center for Science (CSC)
Deutsches Zentrum für Luft- und Raumfahrt (DLR)
Max Planck Society
Canadian Space Agency (CSA)
DTU Space (Denmark)
State Secretariat for Education and Research (Switzerland)
Swiss Space Office (SSO)
Research Council of Norway
Science Foundation, Ireland
Fundação para a Ciência e a Tecnologia (FCT)
Ministério da Ciência, Tecnologia e Ensino Superior (MCTES)
European Research Council (ERC)
267934
Partnership for Advanced Computing in Europe (PRACE)

Dates

Created
2019-07-02
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Updated
2023-05-08
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