Inflation, Large Branes, and the Shape of Space
arXiv:hep-th/0410115 · doi:10.1016/j.nuclphysb.2004.11.053
Abstract
Linde has recently argued that compact flat or negatively curved spatial sections should, in many circumstances, be considered typical in Inflationary cosmologies. We suggest that the "large brane instability" of Seiberg and Witten eliminates the negative candidates in the context of string theory. That leaves the flat, compact, three-dimensional manifolds -- Conway's *platycosms*. We show that deep theorems of Schoen, Yau, Gromov and Lawson imply that, even in this case, Seiberg-Witten instability can be avoided only with difficulty. Using a specific cosmological model of the Maldacena-Maoz type, we explain how to do this, and we also show how the list of platycosmic candidates can be reduced to three. This leads to an extension of the basic idea: the conformal compactification of the entire Euclidean spacetime also has the topology of a flat, compact, four-dimensional space.
29 pages, clarifications, typos fixed, references added
References in corpus (9)
- Interaction Rates in String Gas Cosmology
- Stability in Asymptotically AdS Spaces
- Describing the platycosms
- Dynamical decompactification from brane gases in eleven-dimensional supergravity
- Freund-Rubin Revisited
- Pseudo-Riemannian metrics with prescribed scalar curvature
- An AdS Crunch in Supergravity
- Observations on the Space of Four Dimensional String and theory Vacua
- Cosmology: Techniques and Observations
Cited by in corpus (16)
- The Phantom Divide in String Gas Cosmology
- Fermionic Casimir densities in toroidally compactified spacetimes with applications to nanotubes
- Casimir effect in de Sitter spacetime with compactified dimension
- Fermionic Casimir effect in toroidally compactified de Sitter spacetime
- Wightman function and vacuum densities in de Sitter spacetime with toroidally compactified dimensions
- Circles-in-the-sky searches and observable cosmic topology in a flat Universe
- Pre-Inflationary Spacetime in String Cosmology
- Scalar and fermionic vacuum currents in de Sitter spacetime with compact dimensions
- Fermionic vacuum densities in higher-dimensional de Sitter spacetime
- Induced fermionic currents in de Sitter spacetime in the presence of a compactified cosmic string
- The Most Probable Size of the Universe
- The Geometry of The Entropic Principle and the Shape of the Universe
- Unitarity at Infinity and Topological Holography
- Space, Time, and Tachyon Condensation
- Singularities in and Stability of Ooguri-Vafa-Verlinde Cosmologies
- Fermionic Casimir effect in de Sitter spacetime