Remarkable symmetries in the Milky Way disk's magnetic field
Abstract
Using a new, expanded compilation of extragalactic source Faraday rotation measures (RM) we investigate the broad underlying magnetic structure of the Galactic disk at latitudes over all longitudes , where our total number of RM's in this low-latitude range of the Galactic sky is comparable to those in the combined Canadian Galactic Plane Survey(CGPS) at and the Southern Galactic Plane (SGPS) survey. We report newly revealed, remarkably coherent patterns of RM at from to and RM() features of unprecedented clarity that replicate in with opposite sign on opposite sides of the Galactic center. They confirm a highly patterned bisymmetric field structure toward the inner disc, an axisymmetic pattern toward the outer disc, and a very close coupling between the CGPS/SGPS RM's at ("mid-plane") and our new RM's up to ("near-plane"). Our analysis also shows the approximate -height -- the vertical height of the coherent component of the disc field above the Galactic disc's mid-plane -- to be kpc out to kpc from the Sun. This identifies the approximate height of the transition layer to the halo field structure. We find no RM sign change across the plane within in any longitude range. The prevailing {\it disc} field pattern, and its striking degree of large scale ordering confirm that our side of the Milky Way has a very organized underlying magnetic structure, for which the inward spiral pitch angle is at all up to in the inner semicircle of Galactic longitudes. It decreases to toward the anticentre.
Keywords
Cite
@article{arxiv.0909.4753,
title = {Remarkable symmetries in the Milky Way disk's magnetic field},
author = {Philipp P. Kronberg and Katherine J. Newton-McGee},
journal= {arXiv preprint arXiv:0909.4753},
year = {2015}
}
Comments
7 pages, 5 figures, Version 3. Accepted 2011 for publication in Publications of the Astronomical Society of Australia(PASA)