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Magicity versus Superfluidity around O 28 viewed from the Study of F 30

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Title
Magicity versus Superfluidity around O 28 viewed from the Study of F 30
Author(s)
Kahlbow, J.; Aumann, T.; Sorlin, O.; Kondo, Y.; Nakamura, T.; Nowacki, F.; Revel, A.; Achouri, N.L.; Al Falou, H.; Atar, L.; Baba, H.; Boretzky, K.; Caesar, C.; Calvet, D.; H. Chae; Chiga, N.; Corsi, A.; Delaunay, F.; Delbart, A.; Deshayes, Q.; Dombrádi, Z.; Douma, C.A.; Elekes, Z.; Gašparić, I.; Gheller, J.-M.; Gibelin, J.; Gillibert, A.; Harakeh, M.N.; Hirayama, A.; Holl, M.; Horvat, A.; Horváth, Á.; Hwang, J.W.; Isobe, T.; Kalantar-Nayestanaki, N.; Kawase, S.; Kim, S.; Kisamori, K.; Kobayashi, T.; Körper, D.; Koyama, S.; Kuti, I.; Lapoux, V.; Lindberg, S.; Marqués, F.M.; Masuoka, S.; Mayer, J.; Miki, K.; Murakami, T.; Najafi, M.; Nakano, K.; Nakatsuka, N.; Nilsson, T.; Obertelli, A.; Orr, N.A.; Otsu, H.; Ozaki, T.; Panin, V.; Paschalis, S.; Rossi, D.M.; Saito, A.T.; Saito, T.; Sasano, M.; Sato, H.; Satou, Y.; Scheit, H.; Schindler, F.; Schrock, P.; Shikata, M.; Shimada, K.; Shimizu, Y.; Simon, H.; Sohler, D.; Laszlo Stuhl; Takeuchi, S.; Tanaka, M.; Thoennessen, M.; Törnqvist, H.; Togano, Y.; Tomai, T.; Tscheuschner, J.; Tsubota, J.; Uesaka, T.; Wang, H.; Yang, Z.; Yasuda, M.; Yoneda, K.
Publication Date
2024-08
Journal
Physical Review Letters, v.133, no.8
Publisher
American Physical Society
Abstract
The neutron-rich unbound fluorine isotope F2130 has been observed for the first time by measuring its neutron decay at the SAMURAI spectrometer (RIBF, RIKEN) in the quasifree proton knockout reaction of Ne31 nuclei at 235 MeV/nucleon. The mass and thus one-neutron-separation energy of F30 has been determined to be Sn=-472±58(stat)±33(sys) keV from the measurement of its invariant-mass spectrum. The absence of a sharp drop in Sn(F30) shows that the magicN=20 shell gap is not restored close to O28, which is in agreement with our shell-model calculations that predict a near degeneracy between the neutron d and fp orbitals, with the 1p3/2 and 1p1/2 orbitals becoming more bound than the 0f7/2 one. This degeneracy and reordering of orbitals has two potential consequences: O28 behaves like a strongly superfluid nucleus with neutron pairs scattering across shells, and both F29,31 appear to be good two-neutron halo-nucleus candidates. © 2024 authors. Published by the American Physical Society. Published by the American Physical Society under the terms of the https://creativecommons.org/licenses/by/4.0/Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI.
URI
https://pr.ibs.re.kr/handle/8788114/15715
DOI
10.1103/PhysRevLett.133.082501
ISSN
0031-9007
Appears in Collections:
Center for Exotic Nuclear Studies(희귀 핵 연구단) > 1. Journal Papers (저널논문)
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