Study of the scattering of 15C at energies around the Coulomb barrier

The neutron rich carbon isotope 15C is the only known case of an almost "pure" 2s1/2 single-neutron halo ground state configuration. At collision energies around the Coulomb barrier the reaction dynamics is expected to be dominated by single neutron transfer and breakup. To investigate the...

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Published in27th International Nuclear Physics Conference, INPC 2019, Glasgow, United Kingdom Vol. 1643; no. 1
Main Authors Ovejas, J D, Knyazev, A, Martel, I, Tengblad, O, Borge, M J G, Cederkall, J, Keeley, N, Rusek, K, García-Ramos, C, Pérez, T, Acosta, L A, Arokiaraj, A A, Babo, M, Cap, T, Ceylan, N, Angelis, G De, Pietro, A Di, Fernández, J P, Figuera, P, Fraile, L, Fynbo, H, Galaviz, D, Jensen, J H, Jonson, B, Kotak, R, Kurtukian, T, Madurga, M, Marquínez-Durán, G, Munch, M, Orduz, A K, Honório, R, Pakou, A, Peralta, L, Perea, A, Raabe, R, Renaud, M, Riisager, K, Sánchez-Benítez, A M, Sánchez-Segovia, J, Sgouros, O, Soukeras, V, Teubig, P, Viñals, S, Wolinska-Cichocka, M, Wolski, R, Yang, J
Format Journal Article Conference Proceeding
LanguageEnglish
Published Bristol IOP Publishing 01.12.2020
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Summary:The neutron rich carbon isotope 15C is the only known case of an almost "pure" 2s1/2 single-neutron halo ground state configuration. At collision energies around the Coulomb barrier the reaction dynamics is expected to be dominated by single neutron transfer and breakup. To investigate these effects, we have measured the scattering of 15C with a 208Pb target at 65 MeV at the HIE-ISOLDE facility in CERN (Geneva, Switzerland). The preliminary data demonstrates the presence of a strong long-range absorption pattern in the angular distribution of the elastic cross section. The results are discussed in the framework of Optical Model calculations.
ISSN:1742-6588
1742-6596
1742-6596
DOI:10.1088/1742-6596/1643/1/012095