Causal Horizons, Geodesic Completeness and Stability in Slow Contraction Cosmology
gr-qc, astro-ph.CO
Submitted: 2026-07-08
Updated: 2026-09-01
Comments: 9 pages, 2 figures, 1 table, minor typo corrected
License: http://creativecommons.org/licenses/by-nc-nd/4.0/
The gist: We show that cosmological models with a semi-infinite phase of slow contraction (ekpyrosis) possess a combination of properties that can address several fundamental problems in cosmology, otherwise
Terminology
Abstract
We show that cosmological models with a semi-infinite phase of slow contraction (ekpyrosis) possess a combination of properties that can address several fundamental problems in cosmology, otherwise faced in contracting de Sitter phases or standard big bang expansion. In particular, slow contraction admits a stable past attractor asymptoting to Minkowski space, as well as a stable, flat, homogeneous, and isotropic future attractor with negligible Weyl curvature (and, therefore, negligible gravitational entropy). In bouncing cosmologies, this contracting attractor is terminated by a smooth, non-singular bounce that transforms the attractor properties at the end of contraction into the initial conditions for the subsequent expanding phase. Cosmologies incorporating a slow contraction phase have no particle horizon and therefore avoid the causal horizon problem. The past Minkowski attractor also generates an initial spectrum of vacuum-like quantum fluctuations on all wavelengths. Moreover, because the averaged expansion rate along past-directed geodesics is non-positive, models incorporating a semi-infinite phase of slow contraction also evade the Borde,Guth and Vilenkin theorem and are past geodesically complete. By contrast, contracting de Sitter space possesses a finite particle horizon and becomes unstable in the presence of scalar fields, matter, or radiation.
Sources
- The Ekpyrotic Universe: Colliding Branes and the Origin of the Hot Big Bang
- Bouncing Cosmology made simple
- Kasner and Mixmaster behavior in universes with equation of state w \ge 1
- Causal horizons in a bouncing universe
- Supersmoothing through Slow Contraction
- Entropy, Black holes, and the New Cyclic Universe
- Ekpyrotic and Cyclic Cosmology
- Adiabatic and Isocurvature Perturbations for Multifield Generalized Einstein Models
- Scale-invariant perturbations in ekpyrotic cosmologies without fine-tuning of initial conditions
- Nearly scale-invariant curvature modes from entropy perturbations during graceful exit
- Inflationary spacetimes are not past-complete
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