Varga Pajtlera, Maja; Szilner, Suzana; Corradi, L.; de Angelis, G.; Fioretto, E.; Gadea, A.; Haas, F.; Lunardi, S.; Jelavić Malenica, Deša; Marginean, N.; Mengoni, D.; Mijatović, Tea; Montagnoli, G.; Montanari, D.; Pollarolo, G.; Recchia, F.; Salsac, M.-D.; Scarlassara, F.; Soić, Neven; Stefanini, A.M.; Ur, C.A.; Valiente-Dobon, J.J.
(2015)
Selective properties of neutron transfer reactions in the 90Zr+208Pb system for the population of excited states in zirconium isotopes.
Nuclear Physics A, 941
.
pp. 273-292.
ISSN 0375-9474
Abstract
Nuclei produced via multineutron transfer channels have been studied in 90Zr+208Pb close to the Coulomb barrier energy in a fragment-gamma coincident measurement employing the PRISMA magnetic spectrometer coupled to the CLARA gamma-array. The selective properties of the reaction mechanism have been discussed in terms of states and their strength excited in the neutron transfer channels leading to 89Zr-94Zr isotopes. A strong population of yrast states, with energies up to ~7.5 MeV has been observed.
Item Type: |
Article
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Additional Information: |
The authors are grateful to the LNL Tandem-ALPI Staff for the good quality beams and the target laboratory for the excellent target. This work was partly supported by the European Nuclear Science and Applications Research (ENSAR) Integrated Infrastructure Initiative (I3) in EU-FP7 (Contract ENSAR No. 262010). This work has been supported in part by Croatian Science Foundation under the project 7194 and in part by the Young Researcher project of University of Osijek. |
Uncontrolled Keywords: |
heavy ion transfer reactions; gamma transitions; magnetic spectrometer |
Subjects: |
NATURAL SCIENCES > Physics |
Divisions: |
Division of Experimental Physics |
Projects: |
Project title | Project leader | Project code | Project type |
---|
Eksperimentalno istraživanje atomske jezgre: struktura i reakcije- | Suzana Szilner | 098-1191005-2890 | MZOS |
|
Depositing User: |
Suzana Szilner
|
Date Deposited: |
11 Mar 2019 09:21 |
URI: |
http://fulir.irb.hr/id/eprint/4465 |
DOI: |
10.1016/j.nuclphysa.2015.07.007 |
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4465
WOS:000360515100020