arXiv:2602.09705·v3·Cosmology and Nongalactic Astrophysics
Non-minimally Coupled Running Curvaton for DESI-preferred Dynamical Dark Energy and Hubble Tension
Bichu Li🇨🇳 · Lei-Hua Liu🇨🇳
Abstract
Recent DESI 2025 results have renewed interest in dynamical dark energy models with phantom crossing. In this work, we extend the running curvaton scenario by introducing a non-minimal gravitational coupling, . We show that this coupling can drive the late-time equation of state into the DESI-preferred region in the plane. We further find that, at leading order, the early-universe predictions of the original running curvaton model can be preserved through a parameter redefinition, while the scalar sector remains free of gradient instability in the regime considered. A parameter scan identifies viable regions and a benchmark solution that also shifts the background-inferred value of upward. These results suggest that the non-minimally coupled running curvaton provides a viable framework for DESI-motivated dark energy evolution, with possible implications for the Hubble tension.
Comments: 15 figures, 4 figures, references updated