arXiv:2506.18992·v3·General Relativity and Quantum Cosmology
Cosmological perturbations for smooth sign-switching dark energy models
Mariam Bouhmadi-López🇪🇸 · Beñat Ibarra-Uriondo🇪🇸
Abstract
In this work, we carry out a comprehensive perturbative analysis of four cosmological models featuring a sign-switching cosmological constant. Among these, we include the well-known CDM model, characterised by an abrupt transition from a negative to a positive cosmological constant. We also consider the LCDM model, which exhibits a generalised ladder-step evolution, as well as the SSCDM and ECDM models, both of which undergo a smooth sign change at comparable redshifts. We solve the linear cosmological perturbation equations from the radiation-dominated era, imposing initial adiabatic conditions for matter and radiation, for modes well outside the Hubble radius in the early Universe. We analyse the behaviour of the matter density contrast, the gravitational potential, the linear growth rate, the matter power spectrum, and the evolution . These results are contrasted with predictions from the standard CDM model and are confronted with observational data.
Comments: Version accepted in PDU. Physical discussion improved and references added. 15 pages, 6 figures, REVTeX 4.2, this article is a continuation of arXiv:2506.12139