Primordial magnetic fields constrained by CMB anisotropies and dynamo cosmology
Abstract
Magneto-curvature stresses could deform magnetic field lines and this would give rise to back reaction and restoring magnetic stresses [Tsagas, PRL (2001)]. Barrow et al [PRD (2008)] have shown in Friedman universe the expansion to be slow down in spatial section of negative Riemann curvatures. From Chicone et al [CMP (1997)] paper, proved that fast dynamos in compact 2D manifold implies negatively constant Riemannian curvature, here one applies the Barrow-Tsagas ideas to cosmic dynamos. Fast dynamo covariant stretching of Riemann slices of cosmic Lobachevsky plane is given. Inclusion of advection term on dynamo equations [Clarkson et al, MNRAS (2005)] is considered. In absence of advection a fast dynamo is also obtained. Viscous and restoring forces on stretching particles decrease, as magnetic rates increase. From COBE data (), one computes stretching . Zeldovich et al has computed the maximum magnetic growth rate as . From COBE data one computes a lower growth rate for the magnetic field as , well-within Zeldovich et al estimate. Instead of the Harrison value one obtains the lower primordial field which yields the at the Big Bang time.
Keywords
Cite
@article{arxiv.0911.1581,
title = {Primordial magnetic fields constrained by CMB anisotropies and dynamo cosmology},
author = {Garcia de Andrade},
journal= {arXiv preprint arXiv:0911.1581},
year = {2010}
}
Comments
Dept of theoretical physics-UERJ-Brasil