English

Nuclear Excitation by Muon Capture

Nuclear Theory 2022-10-12 v1

Abstract

Efficient excitation of nuclei via exchange of a real or virtual photon has a fundamental importance for nuclear science and technology development. Here, we present a new mechanism of nuclear excitation based on the capture of a free muon into the atomic orbits (NEμ\muC). The cross section of such a new process is evaluated using the Feshbach projection operator formalism and compared to other known excitation phenomena, i.e. photo-excitation and nuclear excitation by electron capture (NEEC), showing up to ten orders of magnitude increase in cross section. NEμ\muC is particularly interesting for MeV excitations that become accessible thanks to the stronger binding of muons to the nucleus. The binding energies of muonic atoms have been calculated introducing a state of the art modification to the Flexible Atomic Code (FAC). An analysis of an experimental scenarios in the context of modern muon production facilities shows that the effect can be detectable for selected isotopes. The total probability of NEμ\muC is predicted to be P106 P \approx 10^{-6} per incident muon in a beam-based scenario. Given the high transition energy provided by muons, NEμ\muC can have important consequences for isomer feeding and particle-induced fission.

Keywords

Cite

@article{arxiv.2202.11215,
  title  = {Nuclear Excitation by Muon Capture},
  author = {Simone Gargiulo and Ming Feng Gu and Fabrizio Carbone and Ivan Madan},
  journal= {arXiv preprint arXiv:2202.11215},
  year   = {2022}
}

Comments

15 pages, 4 Figures and 2 Tables

R2 v1 2026-06-24T09:50:27.996Z