English

Measuring inflaton couplings via dark radiation as $\Delta N_{\rm eff}$ in CMB

High Energy Physics - Phenomenology 2023-10-23 v3 Cosmology and Nongalactic Astrophysics

Abstract

We study the production of a beyond the Standard Model (BSM) free-streaming relativistic particles which contribute to NeffN_{eff} and investigate how much the predictions for the inflationary analysis change. We consider inflaton decay as the source of this dark radiation (DR) and use the Cosmic Microwave Background (CMB) data from Planck\textit{Planck}-2018 to constrain the scenarios and identify the parameter space involving couplings and masses of the inflaton that will be within the reach of next-generation CMB experiments like SPT-3G, CMB-S4, \text{CMB-Bh\overline{a}rat}, PICO, CMB-HD, etc. We find that if the BSM particle is produced only from the interaction with inflaton along with Standard Model (SM) relativistic particles, then its contribution to NeffN_{eff} is a monotonically increasing function of the branching fraction, BXB_X of the inflaton to the BSM particle XX; Planck\textit{Planck} bound on NeffN_{eff} rules out such BX0.09B_X \gtrsim 0.09. Considering two different analyses of Planck\textit{Planck}+BICEP data together with other cosmological observations, NeffN_{eff} is treated as a free parameter, which relaxes the constraints on scalar spectral index (nsn_s) and tensor-to-scalar ratio (rr). The first analysis leads to predictions on the inflationary models like Hilltop inflation being consistent with the data. Second analysis rules out the possibility that BSM particle XX producing from the inflaton decay in Coleman-Weinberg Inflation or Starobinsky Inflation scenarios. To this end, we assume that SM Higgs is produced along with the BSM particle. We explore the possibilities that XX can be either a scalar or a fermion or a gauge boson and consider possible interactions with inflaton and find out the permissible range on the allowed parameter space Planck and those which will be within the reaches of future CMB observations.

Keywords

Cite

@article{arxiv.2302.03268,
  title  = {Measuring inflaton couplings via dark radiation as $\Delta N_{\rm eff}$ in CMB},
  author = {Anish Ghoshal and Zygmunt Lalak and Shiladitya Porey},
  journal= {arXiv preprint arXiv:2302.03268},
  year   = {2023}
}

Comments

33 pages, 18 figures. Published in Phys. Rev. D