English

Resonances in the early Universe

General Relativity and Quantum Cosmology 2026-05-26 v2

Abstract

In the present paper, we study a Friedmann-Lema\^itre-Robertson-Walker (FLRW) quantum cosmology model with positively curved spatial sections. The matter content of the model is given by a radiation fluid, a Generalized Chaplygin gas, and an ad hoc potential. After writing the Hamiltonian of the model, we notice that the effective potential (VeffV_{eff}) depends on four parameters: AA, BB and α\alpha associated with the Generalized Chaplygin gas, and σ\sigma associated with the ad hoc potential. Depending on the values of these parameters VeffV_{eff} becomes a double barrier potential. We quantize the model and obtain the Wheeler-DeWitt equation. We solve that equation using the WKB approximation and compute the corresponding probability (TPWKBTP_{WKB}) that the wavefunction of the universe tunnels through the double barrier potential VeffV_{eff}. We study how TPWKBTP_{WKB} behaves as a function of the parameters AA, BB, α\alpha, σ\sigma and the radiation energy EE. We notice the occurrence of resonances in TPWKBTP_{WKB} when we vary it as a function of EE, AA, BB, α\alpha and σ\sigma. It is a very interesting phenomenon because it may cause the universe to be born with selected values of EE, AA, BB, α\alpha and σ\sigma.

Keywords

Cite

@article{arxiv.2512.13621,
  title  = {Resonances in the early Universe},
  author = {D. L. Canedo and G. Oliveira-Neto and G. A. Monerat and E. V. Corrêa Silva},
  journal= {arXiv preprint arXiv:2512.13621},
  year   = {2026}
}

Comments

The paper has 17 pages and 7 figures