Magnetic Fields in an Expanding Universe
Abstract
We find a solution to Einstein-Maxwell theory coupled to a massless dilaton field describing a Melvin magnetic field in an expanding universe with 'stiff matter' equation of state parameter . As the universe expands, magnetic flux becomes more concentrated around the symmetry axis for dilaton coupling and more dispersed for . An electric field circulates around the symmetry axis in the direction determined by Lenz's law. For the magnetic flux through a disk of fixed comoving radius is proportional to the proper area of the disk. This result disagrees with the usual expectation based on a test magnetic field that this flux should be constant, and we show why this difference arises. We also find a Melvin solution in an accelerating universe with for a dilaton field with a certain exponential potential. Our main tools are simple manipulations in Kaluza-Klein theory and related solution generating techniques. We also discuss a number of directions for possible extensions of this work.
Cite
@article{arxiv.1312.4923,
title = {Magnetic Fields in an Expanding Universe},
author = {David Kastor and Jennie Traschen},
journal= {arXiv preprint arXiv:1312.4923},
year = {2015}
}
Comments
17 pages, 2 figures; v2 - references added