Surviving the crash: assessing the aftermath of cosmic bubble collisions
arXiv:0811.0866 · doi:10.1103/PhysRevD.79.123514
Abstract
This paper is the third in a series investigating the possibility that if we reside in an inflationary "bubble universe", we might observe the effects of collisions with other such bubbles. Here, we study the interior structure of a bubble collision spacetime, focusing on the issue of where observers can reside. Numerical simulations indicate that if the inter-bubble domain wall accelerates away, infinite spacelike surfaces of homogeneity develop to the future of the collision; this strongly suggests that observers can have collisions to their past, and previous results then imply that this is very likely. However, for observers at nearly all locations, the restoration of homogeneity relegates any observable effects to a vanishingly small region on the sky. We find that bubble collisions may also play an important role in defining measures in inflation: a potentially infinite relative volume factor arises between two bubble types depending on the sign of the acceleration of the domain wall between them; this may in turn correlate with observables such as the scale or type of inflation.
19 pages with 13 embedded figures. Improved discussion of the implications for observability and the measure, added references
References in corpus (15)
- Inflationary Cosmology
- Eternal inflation and its implications
- Gauge invariant MSSM inflaton
- A Delicate Universe
- Eternal Inflation: The Inside Story
- Predicting the cosmological constant with the scale-factor cutoff measure
- Properties of the scale factor measure
- Towards observable signatures of other bubble universes
- Holographic Systematics of D-brane Inflation
- Eternal inflation, bubble collisions, and the persistence of memory
- Accidental Inflation in String Theory
- Prospects of inflation in delicate D-brane cosmology
- A measure of the multiverse
- Predictions in eternal inflation
- Towards observable signatures of other bubble universes II: Exact solutions for thin-wall bubble collisions