Multinucleon transfer reactions and proton transfer channels

Transfer reactions have always been of great importance for nuclear structure and reaction mechanism studies. So far, in multinucleon transfer studies, proton pickup channels have been completely identified in atomic and mass numbers at energies close to the Coulomb barrier only in few cases. We mea...

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Published in:EPJ Web of conferences Vol. 223; p. 1039
Main Authors: Mijatović, Tea, Szilner, Suzana, Corradi, Lorenzo, Galtarossa, Franco, Bakes, Samuel, Brugnara, Daniele, Carozzi, Gabriele, Colucci, Giulia, Čolović, Petra, Fioretto, Enrico, Gadea, Andres, Goasduff, Alain, Gottardo, Andrea, Jaworski, Grzegorz, Jelavić Malenica, Deša, Marchi, Tommaso, Mengoni, Daniele, Milin, Matko, Montagnoli, Giovanna, Nurkić, Deni, Pollarolo, Giovanni, Popočovski, Romana, Scarlassara, Fernando, Siciliano, Marco, Soić, Neven, Stefanini, Alberto, Testov, Dmitry, Ur, Calin, Valiente - Dobón, Jose Javier, Vukman, Nikola, Zanon, Irene
Format: Journal Article Conference Proceeding
Language:English
Published: Les Ulis EDP Sciences 2019
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Summary:Transfer reactions have always been of great importance for nuclear structure and reaction mechanism studies. So far, in multinucleon transfer studies, proton pickup channels have been completely identified in atomic and mass numbers at energies close to the Coulomb barrier only in few cases. We measured the multinucleon transfer reactions in the 40 Ar+ 208 Pb system near the Coulomb barrier, by employing the PRISMA magnetic spectrometer. By using the most neutron-rich stable 40 Ar beam we could populate, besidesneutron pickup and proton stripping channels, also neutron stripping and proton pickup channels. Comparison ofcross sections between different systems with the 208 Pb target and with projectiles going from neutron-poor to neutron-rich nuclei, as well as between the data and GRAZING calculations, was carried out.Finally, recent results concerning the measurement of the excitation function from the Coulomb barrier to far below for the 92 Mo+ 54 Fe system, where both proton stripping and pickup channels were populated with similar strength, will be discussed.
ISSN:2100-014X
2101-6275
2100-014X
DOI:10.1051/epjconf/201922301039