arXiv · 2606.25486
The renormalization of the shell-model neutrinoless double-beta decay operator starting from effective field theory (I)
Abstract
In this work, we approach for the first time the task to perform a shell-model calculation of the matrix element for the neutrinoless double-beta decay, within a fully-consistent framework where the expressions of the nuclear Hamiltonian and of the decay operators have been derived through chiral perturbation theory. More precisely, the effective shell-model Hamiltonian and all transition operators have been constructed by way of the many-body perturbation theory, and then employed to calculate both spectroscopic properties of the nuclei involved in the decays under our consideration - namely 48Ca, 76Ge, and 82Se -, as well as the nuclear matrix elements of the electromagnetic and neutrinoless double-beta decays. We also present a study of the convergence properties of the calculated matrix elements in order to provide the elements for an estimate of the theoretical uncertainty.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
L. Coraggio, G. De Gregorio, S. L. Lyu, N. Itaco. 2026-06-24. The renormalization of the shell-model neutrinoless double-beta decay operator starting from effective field theory (I). https://arxiv.org/abs/2606.25486
Cite the original work for its findings. Save a collection to share your selection of sources.