Initial State Interaction for the 20Ne + 130Te and 18O + 116Sn Systems at 15.3 AMeV from Elastic and Inelastic Scattering Measurements

Author:

Carbone DianaORCID,Linares RobertoORCID,Amador-Valenzuela PaulinaORCID,Calabrese Salvatore,Cappuzzello FrancescoORCID,Cavallaro ManuelaORCID,Firat Suna,Fisichella Maria,Spatafora AlessandroORCID,Acosta Luis,Agodi ClementinaORCID,Boztosun IsmailORCID,Brischetto Giuseppe A.,Calvo Daniela,Chávez Lomelí Efrain R.,Ciraldo Irene,Cutuli Mauro,Delaunay FranckORCID,Deshmukh Nikit,Finocchiaro PaoloORCID,Foti Antonino,Hacisalihoglu Aylin,Iazzi Felice,La Fauci Laura,Lanzalone Gaetano,Medina Nilberto H.ORCID,Mendes Djalma,Oliveira José R. B.ORCID,Pakou Athina,Pandola LucianoORCID,Petrascu Horia,Pinna Federico,Russo Giuseppe,Sgouros OnoufriosORCID,Solakci Selçuk O.,Soukeras VasilisORCID,Souliotis George,Torresi DomenicoORCID,Tudisco SalvatoreORCID,Yildirim AydinORCID,Zagatto Vinicius A. B.

Abstract

Double charge exchange (DCE) reactions could provide experimentally driven information about nuclear matrix elements of interest in the context of neutrinoless double-β decay. To achieve this goal, a detailed description of the reaction mechanism is mandatory. This requires the full characterization of the initial and final-state interactions, which are poorly known for many of the projectile-target systems involved in future DCE studies. Among these, we intend to study the 20Ne + 130Te and 18O + 116Sn systems at 15.3 AMeV, which are particularly relevant due to their connection with the 130Te→130Xe and 116Cd→116Sn double-β decays. We measure the elastic and inelastic scattering cross-section angular distributions and compare them with theoretical calculations performed in the optical model, one-step distorted wave Born approximation, and coupled-channel approaches using the São Paulo double-folding optical potential. A good description of the experimental data in the whole explored range of transferred momenta is obtained provided that couplings with the 21+ states of the projectile and target are explicitly included within the coupled-channel approach. These results are relevant also in the analysis of other quasi-elastic reaction channels in these systems, in which the same couplings should be included.

Funder

European Research Council

Publisher

MDPI AG

Subject

General Physics and Astronomy

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