English

The $N_{\rm eff}$ at CMB challenges $U(1)_X$ light gauge boson scenarios

High Energy Physics - Phenomenology 2024-09-24 v2

Abstract

The relativistic degrees of freedom (NeffN_{\rm eff}) is one of the crucial cosmological parameters. The precise measurement of NeffN_{\rm eff} at the time of cosmic microwave background formation, by Planck 2018 can be used to understand the new fundamental interactions, in particular involving light mediators. Presence of any new particle with sufficient energy density and sizeable interactions with Standard Model particles at the temperature around \sim MeV can significantly alter the neutrino decoupling and hence NeffN_{\rm eff}. Thus the bound on NeffN_{\rm eff} can place stringent constraints on various beyond Standard Model paradigms involving light particles. U(1)XU(1)_X models are among such scenarios and are widely studied in several aspects. In this work, we consider several popular U(1)XU(1)_X models with light ZZ' boson like U(1)BLU(1)_{B-L}, U(1)B3LiU(1)_{B - 3L_i}, U(1)Bi3LjU(1)_{B_i - 3 L_j}, U(1)LiLjU(1)_{L_i - L_j}; i,j=1,2,3i,j =1,2,3 being the flavour indices and study their impact on NeffN_{\rm eff}. We also examine the constraints from ground based experiments like Xenon1T, Borexino, trident, etc. Our analysis shows that for light mass MZO(MeV)M_{Z'} \lesssim \mathcal{O} (\rm{MeV}) the NeffN_{\rm eff} provides the most stringent constraints on the ZZ' mass and coupling, far exceeding the existing constraints from other experiments.

Keywords

Cite

@article{arxiv.2404.10077,
  title  = {The $N_{\rm eff}$ at CMB challenges $U(1)_X$ light gauge boson scenarios},
  author = {Dilip Kumar Ghosh and Purusottam Ghosh and Sk Jeesun and Rahul Srivastava},
  journal= {arXiv preprint arXiv:2404.10077},
  year   = {2024}
}

Comments

Accepted in PRD