English

Running vacuum and H^4-inflation

General Relativity and Quantum Cosmology 2025-04-04 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

Recent studies of QFT in cosmological spacetime indicate that the speeding up of the present universe may not just be associated with a rigid cosmological term but with a running one that evolves with the expansion rate: Λ=Λ(H)\Lambda=\Lambda(H). This running is inherited from the cosmic evolution of the vacuum energy density (VED), ρvac\rho_{\rm vac}, which is sensitive to quantum effects in curved spacetime that ultimately trigger that running. The VED is a function of the Hubble rate and its time derivatives: ρvac=ρvac(H,H˙,H¨,...)\rho_{\rm vac}=\rho_{\rm vac}(H, \dot{H},\ddot{H},...). Two nearby points of the cosmic evolution during the FLRW epoch are smoothly related as δρvacO(H2)\delta\rho_{\rm vac}\sim {\cal O}(H^2). In the very early universe, in contrast, the higher powers of the Hubble rate take over and bring about a period of fast inflation. They originate from quantum effects on the effective action of vacuum, which we compute. Herein we focus on the lowest possible power for inflation to occur: H4H^4. During the inflationary phase, HH remains approximately constant and very large. Subsequently, the universe enters the usual FLRW radiation epoch. This new mechanism (`RVM-inflation') is not based on any supplementary `inflaton' field, it is fueled by pure QFT effects on the dynamical background and is different from Starobinsky's inflation, in which HH is never constant.

Keywords

Cite

@article{arxiv.2503.01041,
  title  = {Running vacuum and H^4-inflation},
  author = {Joan Solà Peracaula and Cristian Moreno-Pulido and Alex González-Fuentes},
  journal= {arXiv preprint arXiv:2503.01041},
  year   = {2025}
}

Comments

Version accepted in Universe. Typos corrected, extended discussion and references added

R2 v1 2026-06-28T22:03:52.893Z