dc.creatorCIRALDO, IRENE
dc.creatorCAPPUZZELLO, F.
dc.creatorCAVALLARO, M.
dc.creatorCARBONE, D.
dc.creatorBURRELLO, S.
dc.creatorSPATAFORA, A.
dc.creatorGARGANO, A.
dc.creatorDE GREGORIO, G.
dc.creatorMAGANA VSEVOLODOVNA, R.I.
dc.creatorACOSTA, L.
dc.creatorAGODI, C.
dc.creatorAMADOR-VALENZUELA, P.
dc.creatorBORELLO-LEWIN, T.
dc.creatorBRISCHETTO, G.A.
dc.creatorCALABRESE, S.
dc.creatorCALVO, D.
dc.creatorCAPIROSSI, V.
dc.creatorCHAVEZ LOMELI, E.R.
dc.creatorCOLONNA, M.
dc.creatorDELAUNAY, F.
dc.creatorDJAPO, H.
dc.creatorEKE, C.
dc.creatorFINOCCHIARO, P.
dc.creatorFIRAT, S.
dc.creatorFISICHELLA, M.
dc.creatorFOTI, A.
dc.creatorHACISALIHOGLU, A.
dc.creatorIAZZI, F.
dc.creatorLA FAUCI, L.
dc.creatorLINARES, R.
dc.creatorMEDINA, N.H.
dc.creatorMORALLES, M.
dc.creatorOLIVEIRA, J.R.B.
dc.creatorPAKOU, A.
dc.creatorPANDOLA, L.
dc.creatorPETRASCU, H.
dc.creatorPINNA, F.
dc.creatorRUSSO, G.
dc.creatorSANTOPINTO, E.
dc.creatorSGOUROS, O.
dc.creatorGUAZZELLI, M.A.
dc.creatorSOLAKCI, S.O.
dc.creatorSOUKERAS, V.
dc.creatorSOULIOTIS, G.
dc.creatorTORRESI, D.
dc.creatorTUDISCO, S.
dc.creatorYILDIRIM, A.
dc.creatorZAGATTO, V.A.B.
dc.date2023
dc.date2023-06-27T20:07:47Z
dc.date2023-06-27T20:07:47Z
dc.date.accessioned2023-09-28T14:26:10Z
dc.date.available2023-09-28T14:26:10Z
dc.identifier1742-6588
dc.identifierhttp://repositorio.ipen.br/handle/123456789/34099
dc.identifier2453
dc.identifier10.1088/1742-6596/2453/1/012013
dc.identifierSem Percentil
dc.identifier22
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/9004306
dc.descriptionHeavy-ion one-nucleon transfer reactions are promising tools to investigate singleparticle configurations in nuclear states, with and without the excitation of the core degrees of freedom. An accurate determination of the spectroscopic amplitudes of these configurations is essential for the study of other direct reactions as well as beta-decays. In this context, the 76Se(18O,17O)77Se one-neutron transfer reaction gives a quantitative access to the relevant single particle orbitals and core polarization transitions built on 76Se. This is particularly relevant, since it provides data-driven information to constrain nuclear structure models for the 76Se nucleus. The excitation energy spectrum and the differential cross section angular distributions of this nucleon transfer reaction was measured at 275 MeV incident energy for the first time using the MAGNEX large acceptance magnetic spectrometer. The data are compared with calculations based on distorted wave Born approximation and coupled channel Born approximation adopting spectroscopic amplitudes for the projectile and target overlaps derived by large-scale shell model calculations and interacting boson-fermion model. These reactions are studied in the frame of the NUMEN project. The NUMEN (NUclear Matrix Elements for Neutrinoless double beta decay) project was conceived at the Istituto Nazionale di Fisica Nucleare???Laboratori Nazionali del Sud (INFN-LNS) in Catania, Italy, aiming at accessing information about the nuclear matrix elements (NME) of neutrinoless double beta decay (0??????) through the study of the heavy-ion induced double charge exchange (DCE) reactions on various 0?????? decay candidate targets. Among these, the 76Se nucleus is under investigation since it is the daughter nucleus of 76Ge in the 0?????? decay process.
dc.format1-8
dc.relationJournal of Physics: Conference Series
dc.rightsopenAccess
dc.sourceInternational Spring Seminar on Nuclear Physics Perspectives and Challenges in Nuclear Structure after 70 Years of Shell Model, 13th, May 14-20, 2022, Sant'Angelo, Italy
dc.subjectnuclear matrix
dc.subjectmatrix elements
dc.subjecttransfer reactions
dc.subjectheavy ion reactions
dc.titleStudy of the one-neutron transfer reaction in 18O + 76Se collision at 275 MeV in the context of the NUMEN project
dc.typeArtigo de peri??dico
dc.coverageI


Este ítem pertenece a la siguiente institución