Stability of winding cosmic wall lattices with X type junctions
摘要
This work confirms the stability of a class of domain wall lattice models that can produce accelerated cosmological expansion, with pressure to density ratio at early times, and with at late times when the lattice scale becomes large compared to the wall thickness. For walls of tension , the relevant X type junctions could be unstable (for a sufficiently acute intersection angle ) against separation into a pair of Y type junctions joined by a compound wall, only if the tension of the latter were less than (and for an approximately right-angled intersection if it were less that ) which can not occur in the class considered here. In an extensive category of multicomponent scalar field models of forced harmonic (linear or non-linear) type it is shown how the relevant tension -- which is the same as the surface energy density of the wall -- can be calculated as the minimum (geodesic) distance between the relevant vacuum states as measured on the space of field values using a positive definite (Riemannian) energy metric that is obtained from the usual kinetic metric (which is flat for a model with ordinary linear kinetic part) by application of a conformal factor proportional to the relevant potential function . For suitably periodic potential functions there will be corresponding periodic configurations -- with parallel walls characterised by incrementation of a winding number -- in which the condition for stability of large scale bunching modes is shown to be satisfied automatically. It is suggested that such a configuration -- with a lattice lengthscale comparable to intergalactic separation distances -- might have been produced by a late stage of cosmological inflation.
引用
@article{arxiv.hep-ph/0605029,
title = {Stability of winding cosmic wall lattices with X type junctions},
author = {Brandon Carter},
journal= {arXiv preprint arXiv:hep-ph/0605029},
year = {2009}
}
备注
30 pages Latex. December 2007 update (published version, with new appendix) of contribution for 'Macro and Micro Structures of Spacetime', 11th Peyresq Physics Meeting, June 2006, and for 'Condensates in Physics: from Atoms to Cosmology', COSLAB workshop, Nottingham, April, 2006