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$\Lambda_{\rm s}$CDM cosmology: Alleviating major cosmological tensions by predicting standard neutrino properties

Cosmology and Nongalactic Astrophysics 2025-01-14 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

We investigate a two-parameter extension of the Λs\Lambda_{\rm s}CDM model by allowing variations in the effective number of neutrino species NeffN_{\rm eff} and their total mass mν\sum m_\nu. Our motivation is twofold: (i) to examine whether Λs\Lambda_{\rm s}CDM retains its success in fitting the data and addressing major cosmological tensions, without suggesting a need for a deviation from the standard model of particle physics, and (ii) to determine whether the data indicate new physics that could potentially address cosmological tensions, either in the post-recombination universe through the late-time mirror AdS-dS transition, or in the pre-recombination universe through modifications in the standard values of NeffN_{\rm eff} and mν\sum m_\nu, or both. Within the extended Λs\Lambda_{\rm s}CDM model, referred to as Λs\Lambda_{\rm s}CDM+NeffN_{\rm eff}+mν\sum m_{\rm \nu}, we find no significant tension when considering the Planck-alone analysis. We observe that incorporating BAO data limits the further success of the Λs\Lambda_{\rm s}CDM extension. However, the weakly model-dependent BAOtr data, along with Planck and Planck+PP\&SH0ES, favor H073kms1Mpc1H_0\sim 73\,{\rm km\, s^{-1}\, Mpc^{-1}}. In cases where BAOtr dataset is used, the mirror AdS-dS transition is very effective in providing enhanced H0H_0 values, and thus the model requires no significant deviation from the standard value of Neff=3.044N_{\rm eff} = 3.044. Both the H0H_0 and S8S_8 tensions are effectively addressed, with some compromise in the case of the Planck+BAO dataset. Finally, the upper bounds obtained on mν0.5\sum m_\nu \lesssim 0.5~eV are fully compatible with neutrino oscillation experiments. Our findings provide evidence that late-time physics beyond Λ\LambdaCDM, such as Λs\Lambda_{\rm s}CDM, without altering the standard pre-recombination universe, can suffice to alleviate the major cosmological tensions.

Keywords

Cite

@article{arxiv.2406.18496,
  title  = {$\Lambda_{\rm s}$CDM cosmology: Alleviating major cosmological tensions by predicting standard neutrino properties},
  author = {Anita Yadav and Suresh Kumar and Cihad Kibris and Ozgur Akarsu},
  journal= {arXiv preprint arXiv:2406.18496},
  year   = {2025}
}

Comments

24 pages, 6 figures, 3 tables, matches the version published in JCAP