Early- and Late-Time Modifications to $\Lambda$CDM: Implications for the Hubble Tension
摘要
We investigate an extension of CDM in which a fraction of cold Dark Matter (DM) decays into invisible dark radiation (DR) around the radiation-matter equality epoch, together with a non-standard dark energy (DE) equation of state characterized by . The decaying DM component modifies the early expansion history and reduces the sound horizon at baryon drag, while the DE alters the expansion rate at the late times. A comprehensive analysis combining \texttt{Planck 2018+ACT DR6+DESI DR2+CMB lensing} datasets has been carried out to explore the viability of this framework in addressing the tension. This model yields a Hubble constant of , reducing the discrepancy with SH0ES measurement to and local distance network measurement (H0DN) to . Further, considering \texttt{SH0ES} and \texttt{Pantheon+}, the inferred value of the Hubble constant becomes . The Bayesian evidence suggests that this framework offers a fit to the relevant cosmological datasets at a statistically similar level as CDM. It is observed that correlated early- and late-time modifications to the cosmological expansion history provide a more effective route to reducing the tension than either class of modification alone.
引用
@article{arxiv.2605.26050,
title = {Early- and Late-Time Modifications to $\Lambda$CDM: Implications for the Hubble Tension},
author = {Rahul Dhyani and Purba Mukherjee and Arindam Chatterjee and Anjan A Sen},
journal= {arXiv preprint arXiv:2605.26050},
year = {2026}
}
备注
31 pages, 4 figures, 7 tables (Including Appendix)