Proposal to the ISOLDE and Neutron Time-of-Flight Committee Single-particle states in 81 Zn populated in single-neutron transfer reaction 80 Zn ( d , p ) January 5 , 2011

R. Orlandi, R. Raabe, D. Mücher, A. Jungclaus, M. J. Garćıa Borge, A. Illana, E. Nacher, O. Tengblad, J. Diriken, J. Elseviers, M. Huyse, E. Rapisarda,P. Van Duppen, V. Bildstein, R. Gernhäuser,R. Krücken, K. Nowak, K. Wimmer, A. Andreyev,A. Blazhev, P. Butler, R. Chapman, T. E. Cocolios,A. N. Deacon,G. de Angelis,E. Farnea, K. T. Flanagan, L. M. Fraile, S. J. Freeman, H. O. U. Fynbo, L. Gaffney, A. Gottardo, R. Grzywacz, B. Hadinia, D. J. Jenkins, J. Johansen,K. L. Jones,B. P. Kay,Th. Kröll, J. Lane,S. M. Lenzi, V. Liberati, S. Lunardi,D. Mengoni,D. R. Napoli,B. S. Nara Singh, S. Padgett,S. D. Pain, J. Pakarinen, F. Recchia, P. Reiter,K. Riisager,T. Roger, E. Sahin, J. F. Smith, K. Spohr, J. S. Thomas,J. J. Valiente-Dobón, M. von Schmid, N. Warr

semanticscholar(2011)

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摘要
The aim of this proposal is to study at REX-ISOLDE the low-lying single-particle structure of Zn via the Zn(d,p) reaction in inverse kinematics. This experiment will provide valuable information on the neutron single-particle states neighbouring the N=50 shell gap in close proximity to Ni. The reaction will be studied exploiting the capabilities of the Miniball and T-REX detector arrays. This proposal builds on the experience recently gained in experiment IS491, in which low-lying states of Zn were successfully populated for the first time. Requested shifts: 24 shifts (split into 1 run over 1 year)
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