S-brane to thermal non-singular string cosmology
arXiv:1111.5816 · doi:10.1088/0264-9381/29/9/095014
Abstract
We present a new class of non-singular string cosmologies in d space-time dimensions. At very early times, τ<< τ_c, the Universe is described by a flat σ-model metric, a constant maximal temperature T_c and super-weak string interactions, g_str << 1. During the evolution, the metric remains flat up to τ_c, while the string coupling grows and reaches a critical value g*_str at τ_c. This phase is characterized by a uniform temporal distribution of spacelike branes. At later times, τ> τ_c, the Universe enters in a new phase of expansion, with radiation. The string coupling decreases due to the dilaton motion and asymptotes to a constant for τ>> τ_c. Throughout the evolution, the string coupling remains smaller than g*_str. In the Einstein frame, the cosmologies describe bouncing Universes, where two distinct phases are connected at τ_c. In the initial contracting phase, the evolution of the scale factor is identical to that of a negatively curved Universe filled with radiation. At later times, the Universe enters in an expanding thermal phase with a running dilaton. Explicit examples are presented in a large class of thermal (4,0) type II superstring vacua, with non-trivial "gravito-magnetic" fluxes.
1+35 pages
References in corpus (13)
- Doubled Geometry and T-Folds
- Global Aspects of T-Duality, Gauged Sigma Models and T-Folds
- Resolution of Hagedorn singularity in superstrings with gravito-magnetic fluxes
- Thermal/quantum effects and induced superstring cosmologies
- Induced superstring cosmologies and moduli stabilization
- Non-singular string cosmology in a 2d Hybrid model
- Marginal Deformations of Vacua with Massive boson-fermion Degeneracy Symmetry
- Orbifold Symmetry Reductions of Massive Boson-Fermion Degeneracy
- Massive Boson-Fermion Degeneracy and the Early Structure of the Universe
- Geometric Precipices in String Cosmology
- Massless D-strings and moduli stabilization in type I cosmology
- A Wave-function for Stringy Universes
- Bouncing and cyclic string gas cosmologies
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- Marginal Deformations of Vacua with Massive boson-fermion Degeneracy Symmetry
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- Fluctuations in a Cosmology with a Space-Like Singularity and their Gauge Theory Dual Description
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- Holographic Curvature Perturbations in a Cosmology with a Space-Like Singularity
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