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Complex analysis of scattering 1p-shell nuclei in the framework of coupled channel method

Marzhan NassurllaInstitute of Nuclear Physics, 050032, Almaty, KazakhstanN. BurtebayevInstitute of Nuclear Physics, 050032, Almaty, KazakhstanA. DuisebayevInstitute of Nuclear Physics, 050032, Almaty, KazakhstanJ. BurtebayevaInstitute of Nuclear Physics, 050032, Almaty, KazakhstanC. SpitaleriNational Institute of Nuclear Physics, Sezione di Catania, I-95125, Catania, ItalyA.R. UrkinbayevInstitute of Nuclear Physics, 050032, Almaty, KazakhstanК. RusekHeavy Ion Laboratory of Warsaw University, 02-093, Warsaw PolandE. PiaseckiHeavy Ion Laboratory of Warsaw University, 02-093, Warsaw PolandS. KliczewskiH. Niewodniczański Institute of Nuclear Physics Polish Academy of Sciences, 31-342, Krakow, PolandA. TrzcińskaHeavy Ion Laboratory of Warsaw University, 02-093, Warsaw PolandS.B. SakutaRussian Research Center “Kurchatov Institute”, 123182, Moscow, RussiaI. BoztosunAkdeniz University, Faculty of Science, Department of Physics, 07058, Antalya, TurkeyS. V. ArtemovInstitute of Nuclear Physics, 100214, Tashkent, UzbekistanЛ. И. ГаланинаSkobeltsyn Institute of Nuclear Physics of Moscow State University, 119991, Moscow, Russia
ABI

Аннотация

The scattering process on 1p-shell nuclei, having the cluster structure, can be seen in the anomaly increasing of cross sections for large angles. Most often, this increasing of cross sections is connected with mechanism of transfer of clusters or nucleons. The study of the α-cluster transfer mechanism in the elastic scattering of 20Ne ions on 16O nuclei is important for investigation burning process in evolution of the Universe immediately after the Big-Bang. Therefore new experiment on the heavy ion accelerator (Warsaw University) was carried out with a significant expansion of the range of angles up to 1700 in center mass system at ELab=50.0 MeV. Data analysis of angular distribution was performed in framework of the optical model and coupled channel method. The optimal parameters of the optical potential were obtained and the spectroscopic factor was obtained 1 for 20Ne as α +16O.

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