arXiv:2608.23676·v1·High Energy Physics — Theory
Wilsonian Cosmology: de Sitter (in)Stability
Jean Alexandre🇬🇧 · Lucien Heurtier🇬🇧 · Silvia Pla🇩🇪
Abstract
We develop a (Wilsonian) functional-renormalisation-group framework for scalar cosmology in which quantum fluctuations of a scalar field are coarse-grained on cosmological spacelike hypersurfaces. Integrating out quantum fluctuations with wavelengths smaller than the Hubble radius , we obtain an effective scalar potential that evolves in time. We derive a non-perturbative flow equation for this potential, together with the coupled set of (modified) Friedmann equations. We then apply this formalism to the simplest possible case of a de Sitter vacuum when the scalar field is at rest, in two situations which satisfy exactly our flow equation: A flat potential, for which we find that the only pure de Sitter solution is unstable and corresponds to a saddle point. A quadratic potential with curvature , for which we find that the presence of the mass term stabilises the system. The latter case leads to a de Sitter attractor either at the Hubble scale when the mass is larger than the Hubble scale at initial time, or by introducing a new attractor located at in the case the mass is smaller, which may be particularly relevant to the phenomenological study of dark energy and inflation theories.
Comments: 18 pages, 6 figures