arXiv:hep-th/9205060·v2·High Energy Physics — Theory
Cosmological Implications of Domain Walls due to Duality Invariant Moduli Sector of Superstring Vacua
M. Cvetič🇺🇸 · R. L. Davis🇺🇸
Abstract
We study cosmological implications of the duality () invariant potential for the compactification radius , arising in a class of superstring vacua. We show that in spite of having only one minimum in the fundamental domain of the field there are two types of non-supersymmetric domain walls: one is associated with the discrete Peccei-Quinn symmetry , analogous to the axionic domain wall, and another one associated with the noncompact symmetry , analogous to the domain walls. The first one is bound by stringy cosmic strings. The scale of such domain walls is governed by the scale of gaugino condensation ( GeV) in the case of hidden gauge group), while the separation between minima is of order . We discuss the formation of walls and their cosmological implications: the walls must be gotten rid of, either by chopping by stringy cosmic strings and/or inflation. Since there is no usual Kibble mechanism to create strings, either one must assume they exist , or one must conclude that string cosmologies require inflation. The non-perturbative potential dealt with here appears not to give the needed inflationary epoch.
Comments: 10p., 3 figures, not included, minor wording changes