Canals in Milky Way radio polarization maps
arXiv:astro-ph/0607027 · doi:10.1111/j.1745-3933.2006.00200.x
Abstract
Narrow depolarized canals are common in maps of the polarized synchrotron emission of the Milky Way. Two physical effects that can produce these canals have been identified: the presence of Faraday rotation measure ($\RM$) gradients in a foreground screen and the cumulative cancellation of polarization known as differential Faraday rotation. We show that the behaviour of the Stokes parameters and in the vicinity of a canal can be used to identify its origin. In the case of canals produced by a Faraday screen we demonstrate that, if the polarization angle changes by $90\degr$ across the canal, as is observed in all fields to-date, the gradients in $\RM$ must be discontinuous. Shocks are an obvious source of such discontinuities and we derive a relation of the expected mean separation of canals to the abundance and Mach number of supernova driven shocks, and compare this with recent observations by \citet{Haverkorn03}. We also predict the existence of less common canals with polarization angle changes other than $90\degr$. Differential Faraday rotation can produce canals in a uniform magneto-ionic medium, but as the emitting layer becomes less uniform the canals will disappear. We show that for moderate differences in emissivity in a two-layer medium, of up to 1/2, and for Faraday depth fluctuations of standard deviation , canals produced by differential rotation will still be visible.
Accepted for publication in MNRAS Letters. 5 pages, 3 figures
Cited by in corpus (8)
- Magnetism in the spiral galaxy NGC 6946: magnetic arms, depolarization rings, dynamo modes and helical fields
- A radio-polarisation and rotation measure study of the Gum Nebula and its environment
- ATLAS 1.4 GHz Data Release 2 -- I. Observations of the CDF-S and ELAIS-S1 fields and methods for constructing differential number counts
- Through thick or thin: Multiple components of the magneto-ionic medium towards the nearby region Sharpless 2-27 revealed by Faraday tomography
- Measuring interstellar magnetic fields by radio synchrotron emission
- Faraday tomography of LoTSS-DR2 data: II. Multi-tracer analysis in the high-latitude outer Galaxy
- Polarised radiative transfer, rotation measure fluctuations and large-scale magnetic fields
- Distant probes of RM structure -- Where is the Faraday Rotation towards the Magellanic Leading Arm?