Beyond CPL: Evidence for dynamical dark energy in three-parameter models
Abstract
We introduce two three-parameter extensions of the minimal Akhtar-Hossain (mAH) dark energy parametrization, termed modified minimal AH (MmAH1 and MmAH2), which provide a smooth and bounded evolution of the dark energy equation of state while retaining CDM as a limiting case. Using a joint analysis of the CMB compressed likelihood, DESI DR2 BAO, , redshift space distortions, and three SNeIa samples (PantheonPlus, Union3, and DESY5), we compare these models with CDM, CDM, mAH, CPL, and the three-parameter CPL- extension. The standard cosmological parameters remain stable across all models, while CPL, MmAH1 and MmAH2 parametrizations yield modest but consistent improvements in fit ( to for PantheonPlus and Union3, and for DESY5). Statistical consistency with CDM, quantified via the Mahalanobis distance in one, two, and three dimensional parameter subspaces, reveals mild to moderate deviations, -- for PantheonPlus, -- for Union3, and up to -- for DESY5 combination, depending on model complexity. Among all extensions CPL, MmAH1 and MmAH2 provide the most stable and physically coherent representations of dynamical dark energy, maintaining moderate tensions with CDM and well behaved parameter correlations. Overall, these results indicate consistent evidence for departures from CDM.
Keywords
Cite
@article{arxiv.2510.03779,
title = {Beyond CPL: Evidence for dynamical dark energy in three-parameter models},
author = {Sonej Alam and Md. Wali Hossain},
journal= {arXiv preprint arXiv:2510.03779},
year = {2026}
}
Comments
27 pages, 3 tables, 5 figures, Accepted in JCAP