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CHARACTERIZING MAGNETIZED TURBULENCE IN M51

2013/01/31 by Martin Houde, Andrew Fletcher, R. Beck +6 · 1 citation
Physics and Astronomy · #Anisotropy #Astrophysics #Astrophysics and Star Formation Studies #Faraday effect #Galaxies: Formation, Evolution, Phenomena #Magnetic field #Mechanics #Optics #Physics #Solar and Space Plasma Dynamics #Turbulence #astro-ph.CO #astro-ph.GA

paper · pdf · doi:10.1088/0004-637x/766/1/49

Accepted for The Astrophysical Journal, 40 pages, 13 figures, and 3 tables

arxiv created 2013/01/31 · openalex publication_date 2013/03/06 · arxiv updated 2015/06/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/06

Abstract

We use previously published high-resolution synchrotron polarization data to perform an angular dispersion analysis with the aim of characterizing magnetized turbulence in M51. We first analyze three distinct regions (the center of the galaxy, and the northwest and southwest spiral arms) and can clearly discern the turbulent correlation length scale from the width of the magnetized turbulent correlation function for two regions and detect the imprint of anisotropy in the turbulence for all three. Furthermore, analyzing the galaxy as a whole allows us to determine a two-dimensional Gaussian model for the magnetized turbulence in M51. We measure the turbulent correlation scales parallel and perpendicular to the local mean magnetic field to be, respectively, δ || = 98 ± 5 pc and δ ⊥ = 54 ± 3 pc, while the turbulent-to-ordered magnetic field strength ratio is found to be B t / B 0 = 1.01 ± 0.04. These results are consistent with those of Fletcher et al., who performed a Faraday rotation dispersion analysis of the same data, and our detection of anisotropy is consistent with current magnetized turbulence theories.

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