high-energy physics

Pseudoscalar Yukawa Coupling Induced Helical Asymmetry in Fermionic Preheating

arXiv:2607.25521

summary

The paper examines how a pseudoscalar Yukawa coupling between the inflaton and a Dirac fermion during preheating can create a helical (left‑right) asymmetry in the produced fermions, using WKB analysis of Bogoliubov coefficients and numerical simulations.

Abstract

In this study, we investigate the fermionic helical asymmetry during preheating by introducing a model in which the Dirac field couples to the scalar inflaton directly through the pseudoscalar Yukawa mechanism described by the term $- g\fracϕ{f} m_ψ\barψ\mathrm{i}γ^5 ψ$. Following inflation, as the inflaton oscillates around the minimum of its potential, the effective frequency of Dirac field changes non-adiabatically, resulting in particle production. These oscillations also indicate that the pseudo-mass changes the sign, leading to the production of helical-asymmetric fermions. We employ the WKB method to analytically calculate the transition relations of the Bogoliubov coefficients, which is valid for an arbitrary number of productions and demonstrates a significant difference compared to the case without asymmetry. In the expanding universe, the presence of pseudo-mass alters the Gaussian distributions for each helical state, since the combined effects of Pauli blocking and parametric resonance produce coherent enhancement and coherent suppression in certain frequency ranges. This departure arises from the imaginary component of the first-order adiabatic complex phase, denoted as . The real part of significantly enhances the number density of each helical state after eight oscillations of the inflaton since the coherent superposition. These conclusions have also been validated by the numerical results.

Topics & keywords

#fermionic preheating#pseudoscalar Yukawa coupling#helical asymmetry#inflationary dynamics#parametric resonance#WKB methodDirac fieldinflatonpseudo-massBogoliubov coefficientsPauli blockingadiabatic phase