English

Single pion-production and pion propagation in Achilles

High Energy Physics - Phenomenology 2026-02-06 v2 High Energy Physics - Experiment Nuclear Theory

Abstract

We extend the applicability of Achilles (A CHIcagoLand Lepton Event Simulator) by incorporating the single-pion production mechanism in a fully exclusive fashion. The electroweak interaction vertex is modeled by combining the state-of-the-art Dynamical Coupled-Channels approach with realistic hole spectral functions, which account for correlations in both the initial target state and the residual spectator system. Final-state interactions are treated using a semi-classical intranuclear cascade that leverages nuclear configurations to determine the correlated spatial distribution of protons and neutrons. The meson-baryon scattering amplitudes used in the cascade are computed within the Dynamical Coupled-Channels framework, consistent with the electroweak vertex. To model pion absorption, we employ the optical potential approach of Oset and Salcedo. As an alternative approach, we explicitly model the production and propagation of resonances which mediate pion-nucleon scattering and pion absorption. We validate out approach against pion-nucleon and pion-nucleus scattering data, and present comparisons with electron- and neutrino-nucleus measurements from e4ν\nu, T2K, MINERν\nuA, and MicroBooNE.

Keywords

Cite

@article{arxiv.2508.19213,
  title  = {Single pion-production and pion propagation in Achilles},
  author = {Joshua Isaacson and William Jay and Alessandro Lovato and Pedro Machado and Alexis Nikolakopoulos and Noemi Rocco and Noah Steinberg},
  journal= {arXiv preprint arXiv:2508.19213},
  year   = {2026}
}

Comments

25 pages, 17 figures, Update to published version