Quintessential inflation from a variable cosmological constant in a 5D vacuum
arXiv:gr-qc/0606119 · doi:10.1016/j.physletb.2006.08.043
Abstract
We explore an effective 4D cosmological model for the universe where the variable cosmological constant governs its evolution and the pressure remains negative along all the expansion. This model is introduced from a 5D vacuum state where the (space-like) extra coordinate is considered as noncompact. The expansion is produced by the inflaton field, which is considered as nonminimally coupled to gravity. We conclude from experiental data that the coupling of the inflaton with gravity should be weak, but variable in different epochs of the evolution of the universe.
final version (figure included)
References in corpus (3)
Cited by in corpus (10)
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- Constraining the quintessential -attractor inflation through dynamical horizon exit method
- Passing to an effective 4D phantom cosmology from 5D vacuum theory of gravity
- Reheating constraints and the tension in Quintessential Inflation