English

Formal Theory of Heavy Ion Double Charge Exchange Reactions

Nuclear Theory 2024-05-09 v1 Nuclear Experiment

Abstract

The theory of heavy ion double charge exchange (DCE) reactions A(Z,N)A(Z±2,N2)A(Z,N)\to A(Z\pm 2,N\mp 2) is recapitulated emphasizing the role of Double Single Charge Exchange (DSCE) and pion-nucleon Majorana DCE (MDCE) reactions. DSCE reactions are of second--order distorted wave character, mediated by isovector nucleon-nucleon (NN) interactions. The DSCE response functions resemble the nuclear matrix elements (NME) of 2ν2β2\nu 2\beta decay. The MDCE process proceeds by a dynamically generated effective rank-2 isotensor interaction, defined by off--shell pion--nucleon DCE scattering. In closure approximation pion potentials and two--nucleon correlations are obtained, similar to the neutrino potentials and the intranuclear exchange of Majorana neutrinos in 0ν2β0\nu 2 \beta Majorana double beta decay (MDBD).

Keywords

Cite

@article{arxiv.2405.04978,
  title  = {Formal Theory of Heavy Ion Double Charge Exchange Reactions},
  author = {Horst Lenske and Jessica Bellone and Maria Colonna and Danilo Gambacurta and Jose-Antonio Lay},
  journal= {arXiv preprint arXiv:2405.04978},
  year   = {2024}
}

Comments

8 pages, 6 figures, Contribution to NRM 16, Varenna, JUne 2023