Extended p3/2 Neutron Orbital and the N=32 Shell Closure in 52Ca

M. Enciu,H. N. Liu,A. Obertelli, P. Doornenbal,F. Nowacki, K. Ogata,A. Poves, K. Yoshida,N. L. Achouri, H. Baba, F. Browne, D. Calvet, F. Chateau,S. Chen,N. Chiga, A. Corsi,M. L. Cortes,A. Delbart,J-M Gheller, A. Giganon, A. Gillibert, C. Hilaire, T. Isobe, T. Kobayashi,Y. Kubota,V Lapoux, T. Motobayashi,I Murray,H. Otsu, V Panin,N. Paul,W. Rodriguez,H. Sakurai, M. Sasano,D. Steppenbeck, L. Stuhl,Y. L. Sun,Y. Togano,T. Uesaka,K. Wimmer, K. Yoneda,O. Aktas, T. Aumann,L. X. Chung,F. Flavigny,S. Franchoo, I Gasparic,R-B Gerst,J. Gibelin,K. Hahn,D. Kim, Y. Kondo, P. Koseoglou,J. Lee,C. Lehr,P. J. Li,B. D. Linh,T. Lokotko, M. MacCormick, K. Moschner,T. Nakamura, S. Y. Park,D. Rossi,E. Sahin,P-A Soderstrom,D. Sohler, S. Takeuchi, H. Toernqvist, V. Vaquero,V Wagner,S. Wang,V Werner,X. Xu, H. Yamada, D. Yan, Z. Yang,M. Yasuda,L. Zanetti

Physical review letters(2022)

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摘要
The one-neutron knockout from 52Ca in inverse kinematics onto a proton target was performed at similar to 230 MeV/nucleon combined with prompt 7 spectroscopy. Exclusive quasifree scattering cross sections to bound states in 51Ca and the momentum distributions corresponding to the removal of 1f7=2 and 2p3=2 neutrons were measured. The cross sections, interpreted within the distorted-wave impulse approximation reaction framework, are consistent with a shell closure at the neutron number N = 32, found as strong as at N = 28 and N = 34 in Ca isotopes from the same observables. The analysis of the momentum distributions leads to a difference of the root-mean-square radii of the neutron 1f7=2 and 2p3=2 orbitals of 0.61(23) fm, in agreement with the modified-shell-model prediction of 0.7 fm suggesting that the large root-mean-square radius of the 2p3=2 orbital in neutron-rich Ca isotopes is responsible for the unexpected linear increase of the charge radius with the neutron number.
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neutron orbital,shell closure,<mmlmath xmlnsmml=http//wwww3org/1998/math/mathml
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