Depolarization of synchrotron radiation in a multilayer magneto-ionic medium
arXiv:1405.3442 · doi:10.1051/0004-6361/201423470
Abstract
Depolarization of diffuse radio synchrotron emission is classified in terms of wavelength-independent and wavelength-dependent depolarization in the context of regular magnetic fields and of both isotropic and anisotropic turbulent magnetic fields. Previous analytical formulas for depolarization due to differential Faraday rotation are extended to include internal Faraday dispersion concomitantly, for a multilayer synchrotron emitting and Faraday rotating magneto-ionic medium. In particular, depolarization equations for a two- and three-layer system (disk-halo, halo-disk-halo) are explicitly derived. To both serve as a `user's guide' to the theoretical machinery and as an approach for disentangling line-of-sight depolarization contributions in face-on galaxies, the analytical framework is applied to data from a small region in the face-on grand-design spiral galaxy M51. The effectiveness of the multiwavelength observations in constraining the pool of physical depolarization scenarios is illustrated for a two- and three-layer model along with a Faraday screen system for an observationally motivated magnetic field configuration.
Accepted for publication in Astronomy & Astrophysics, 12 pages, 4 figures, 2 tables
References in corpus (5)
Cited by in corpus (12)
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- Constraining regular and turbulent magnetic field strengths in M51 via Faraday depolarization
- CHANG-ES XXXIV: Magnetic Field Structure in Edge-On Galaxies Characterising large-scale magnetic fields in galactic halos
- Probing magnetic fields with Square Kilometre array and its precursors
- Polarization Properties of the Electromagnetic Response to High-frequency Gravitational Wave
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- Pseudo-observation of spiral galaxies in the radio band to verify depolarization models
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