English

Hunting Inflaton at FASER

High Energy Physics - Phenomenology 2021-04-07 v3

Abstract

We explore a possibility that an inflaton, which drives the cosmological inflation in the early Universe, can be detected by the recently approved FASER at the High-Luminosity LHC (HL-LHC). We consider nonminimal quartic inflation scenario in the minimal U(1)X_X extension of the Standard Model (SM) with the classical conformal invariance, where the inflaton is identified with the U(1)X_X Higgs field (ϕ\phi). By virtue of the classical conformal invariance and the radiative U(1)X_X symmetry breaking via the Coleman-Weinberg mechanism, the inflationary predictions (in particular, the tensor-to-scaler ratio (rr)), the U(1)X_X coupling (gXg_X) and the U(1)X_X gauge boson mass (mZm_{Z^\prime}), are all determined by only two free parameters, the inflaton mass (mϕm_\phi) and its mixing angle (θ\theta) with the SM Higgs field. The FASER can search for the inflaton for the parameter ranges of 0.1mϕ[GeV]40.1 \lesssim m_\phi[{\rm GeV}] \lesssim 4 and 105θ10310^{-5} \lesssim \theta \lesssim 10^{-3}. Because of the direct connection among rr, gXg_X and mZm_{Z^\prime}, the ZZ^\prime boson resonance search at the HL-LHC and the future measurement of the primordial gravitational wave are complementary to the inflaton search at the FASER.

Keywords

Cite

@article{arxiv.1910.09663,
  title  = {Hunting Inflaton at FASER},
  author = {Nobuchika Okada and Digesh Raut},
  journal= {arXiv preprint arXiv:1910.09663},
  year   = {2021}
}

Comments

8 pages, 4 figures, (updated) version to be published in PRD

R2 v1 2026-06-23T11:50:36.233Z