Energy Conservation and the Chiral Magnetic Effect
Abstract
We analyze the chiral magnetic effect in a homogeneous neutral plasma from the point of view of energy conservation, and construct an effective potential for the growth of maximally helical perturbations of the electromagnetic field. We show that a negative curvature at the origin of the potential, indicating instability of the plasma, is induced by a chiral asymmetry in electron Fermi energy, as opposed to number density, while the potential grows at large field value. It follows that the ground state for a plasma has zero magnetic helicity; a nonzero electron mass will allow an excited state of a plasma with nonzero helicity to relax to that ground state quickly. We conclude that a chiral plasma instability triggered by weak interactions is not a viable mechanism for explaining magnetic fields in stars except possibly when dynamics drives the system far from equilibrium.
Keywords
Cite
@article{arxiv.1612.00032,
title = {Energy Conservation and the Chiral Magnetic Effect},
author = {David B. Kaplan and Sanjay Reddy and Srimoyee Sen},
journal= {arXiv preprint arXiv:1612.00032},
year = {2017}
}
Comments
We have corrected a sign error. But the main conclusions of the paper remain unchanged