arXiv:1912.08751·v2·Cosmology and Nongalactic Astrophysics
Graduated dark energy: Observational hints of a spontaneous sign switch in the cosmological constant
Ozgur Akarsu🇹🇷 · John D. Barrow🇬🇧 · Luis A. Escamilla🇲🇽 · J. Alberto Vazquez🇲🇽
Abstract
We study the cosmological constant () in the standard CDM model by introducing the \textit{graduated dark energy} (gDE) characterised by a minimal dynamical deviation from the null inertial mass density of the in the form with being a ratio of two odd integers, for which its energy density dynamically takes negative values in the finite past. For large negative values of , it creates a phenomenological model described by a smooth function that approximately describes the spontaneously switching sign in the late universe to become positive today. We confront the model with the latest combined observational data sets of PLK+BAO+SN+. It is striking that the data predict bimodal posterior probability distributions for the parameters of the model along with large negative values; the new maximum significantly excludes the , and the old maximum contains the . The improvement in the goodness of fit for the reaches highly significant levels, for the new maxima, while it remains at insignificant levels, , for the old maxima. We show that, in contrast to the old maxima, which do not distinguish from the , the new maxima agree with the model-independent measurements, high-precision Ly- data, and model-independent diagnostic estimates. Our results provide strong hints of a spontaneous sign switch in the cosmological constant and lead us to conjecture that the universe has transitioned from AdS vacua to dS vacua, at a redshift and triggered the late-time acceleration, and suggests looking for such mechanisms in string theory constructions.
Comments: 14 pages, 7 figures, 2 tables; matches the version to appear in PRD