Induced Isotensor Interactions in Heavy-Ion Double-Charge-Exchange Reactions and the Role of Initial and Final State Interactions
Horst Lenske, Jessica Bellone, Danilo Gambacurta, Jos\'e-Antonio Lay

TL;DR
This paper investigates the impact of initial and final state ion-ion interactions on heavy-ion double-charge-exchange reactions, revealing that these reactions are effectively two-nucleon processes with complex spin and isospin interactions, and discusses their relation to double-beta decay.
Contribution
It provides a detailed theoretical framework for understanding ISI and FSI effects in DCE reactions, including the transformation of NN interactions and the role of spin multipole contributions.
Findings
Reactions are two-nucleon processes with induced correlations.
Intermediate propagation links to spin-isospin dipole interactions.
Distortion effects are modeled with black sphere approximation.
Abstract
The role of initial state (ISI) and final state (FSI) ion-ion interactions in heavy-ion double-charge-exchange (DCE) reactions are studied for double single-charge-exchange (DSCE) reactions given by sequential actions of the isovector nucleon-nucleon (NN) T-matrix. In momentum representation, the second-order DSCE reaction amplitude is shown to be given in factorized form by projectile and target nuclear matrix elements and a reaction kernel containing ISI and FSI. Expanding the intermediate propagator in a Taylor series with respect to auxiliary energy allows us to perform the summation in the leading-order term over intermediate nuclear states in closure approximation. %Please ensure meaning has been retained - corrected HL. The nuclear matrix element attains a form given by the products of two-body interactions directly exciting the and…
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