English

Quantum-Corrected $\phi^{4}$ Inflation in Light of ACT Observations

Cosmology and Nongalactic Astrophysics 2025-11-18 v1 General Relativity and Quantum Cosmology

Abstract

Recent measurements from the Atacama Cosmology Telescope (ACT), combined with Planck and DESI data, suggest a scalar spectral index nsn_s higher than the Planck 2018 baseline, thereby placing conventional attractor-type inflationary models such as Starobinsky R2R^2 and Higgs inflation under increasing tension at the 2σ\gtrsim 2\sigma level. In this work, we examine quantum-corrected ϕ4\phi^4 inflation with a non-minimal coupling to gravity. Introducing an anomalous scaling parameter γ\gamma to capture quantum corrections to the effective potential, we derive analytic expressions for the inflationary observables nsn_s and rr. Confronting these predictions with ACT, Planck, and BAO+lensing constraints, we demonstrate that modest values of γ\gamma can raise nsn_s into the ACT-preferred range while maintaining a strongly suppressed tensor-to-scalar ratio. For instance, with N=60N=60 and γ0.006\gamma\simeq 0.006, the model predicts ns0.974n_s\simeq 0.974 and r0.007r\simeq 0.007, in excellent agreement with current bounds. We further investigate preheating dynamics, focusing on particle production via parametric resonance in quantum-corrected ϕ4\phi^4 inflation with a non-minimal coupling to gravity. In this scenario, the inflaton ϕ\phi couples to an additional scalar χ\chi through an interaction g2ϕ2χ2g^{2}\phi^{2}\chi^{2}. In Minkowski spacetime, the resonance dynamics reduce to the Mathieu equation, and we find that broad resonance can be readily achieved, leading to efficient particle production.

Keywords

Cite

@article{arxiv.2508.17263,
  title  = {Quantum-Corrected $\phi^{4}$ Inflation in Light of ACT Observations},
  author = {Jureeporn Yuennan and Peeravit Koad and Farruh Atamurotov and Phongpichit Channuie},
  journal= {arXiv preprint arXiv:2508.17263},
  year   = {2025}
}

Comments

v1: 13 pages, 3 figures