Graph explorer

G-Bounce

We present a wide class of models which realise a bounce in a spatially flat Friedmann universe in standard General Relativity. The key ingredient of the theories we consider is a noncanonical, minimally coupled scalar field belonging to the class of theories with Kinetic Gravity Braiding / Galileon-like self-couplings. In these models, the universe smoothly evolves from contraction to expansion, suffering neither from ghosts nor gradient instabilities around the turning point. The end-point of the evolution can be a standard radiation-domination era or an inflationary phase. We formulate necessary restrictions for Lagrangians needed to obtain a healthy bounce and illustrate our results with phase portraits for simple systems including the recently proposed Galilean Genesis scenario.

7 nodes7 linksoverview previewG-Bounce
7 nodes7 links
G-Bounce7 visible / 7 total nodes / 10 links
Co-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipTopic signalTopic signalTopic signalRelated contextWG-Bouncepreprint / 2011ADamien A. EassonResearcherAIgnacy SawickiResearcherAAlexander VikmanResearcherTastro-ph.CO6979 worksTgr-qc10727 worksThep-th13268 works
PaperSignal 106 links

G-Bounce

preprint / 2011

Open