paper

Alleviating the tension through the interacting dark energy model from quantum gravitational field theory in light of DESI DR2

arXiv:2510.12627

Abstract

Recent DESI DR2 data has shown a significant preference for dynamical dark energy, yet this has further exacerbated the tension. In this work, we explore the potential of interacting dark energy models (CDM and CDM) within the asymptotic-safety framework of quantum gravitational field theory to alleviate the tension. We perform observational constraints using the latest baryon acoustic oscillation data from DESI DR2, cosmic microwave background (CMB) data from Planck and ACT, and type Ia supernova data from DESY5 and PantheonPlus, as well as the SH0ES data. From our analysis, we observe the dynamical scale parameter of the cosmological constant, , in the CDM model using the CMB+DESI+SH0ES data, which deviates from CDM at the level. Simultaneously, we find , reducing the tension to . This increase in the inferred is due to the anti-correlation between and , whereby a negative leads to a higher value. Furthermore, for the CMB+DESI+SH0ES combination, we obtain and , favoring the CDM model over CDM. Overall, the CDM model can improve the fit and ease the tension, especially for the data combinations that provide the strongest statistical support.

13 pages, 4 figures