-delayed neutron emissions from N > 50 gallium isotopes

R. Yokoyama, R. Grzywacz, B. C. Rasco,N. Brewer, K. P. Rykaczewski, I. Dillmann,J. L. Tain,S. Nishimura,D. S. Ahn, A. Algora, J. M. Allmond, J. Agramunt, H. Baba, S. Bae, C. G. Bruno, R. Caballero-Folch, F. Calvino, P. J. Coleman-Smith, G. Cortes, T. Davinson, C. Domingo-Pardo, A. Estrade, N. Fukuda, S. Go, C. J. Griffin, J. Ha, O. Hall, L. J. Harkness-Brennan, J. Heideman, T. Isobe, D. . Kahl, M. Karny, T. Kawano, L. H. Khiem, T. T. King, G. G. Kiss, A. Korgul, S. Kubono, M. Labiche, I. Lazarus,J. Liang, J. Liu,G. Lorusso,M. Madurga, K. Matsui, K. Miernik, F. Montes,A. I. Morales, P. Morrall, N. Nepal,R. D. Page, V. H. Phong, M. Piersa-Silkowska, M. Prydderch, V. F. E. Pucknell, M. M. Rajabali, B. Rubio,Y. Saito,H. Sakurai, Y. Shimizu,J. Simpson, M. Singh,D. W. Stracener,T. Sumikama, H. Suzuki,H. Takeda, A. Tarifeno-Saldivia, S. L. Thomas, A. Tolosa-Delgado, M. Wolinska-Cichocka,P. J. Woods, X. X. Xu

PHYSICAL REVIEW C(2023)

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摘要
beta-delayed gamma-neutron spectroscopy has been performed on the decay of A=84 to 87 gallium isotopes at the RI-beam Factory at the RIKEN Nishina Center using a high-efficiency array of 3He neutron counters (BRIKEN). beta-2n-gamma events were measured in the decays of all of the four isotopes for the first time, which is direct evidence for populating the excited states of two-neutron daughter nuclei. Detailed decay schemes with the gamma branching ratios were obtained for these isotopes, and the neutron emission probabilities (P-xn) were updated from the previous study. Hauser-Feshbach statistical model calculations were performed to understand the experimental branching ratios. We found that the P-1n and P-2n values are sensitive to the nuclear level densities of 1n daughter nuclei and showed that the statistical model reproduced the P-2n/P-1n ratio better when experimental levels plus shell-model level densities fit by the Gilbert-Cameron formula were used as the level-density input. We also showed the neutron and gamma branching ratios are sensitive to the ground-state spin of the parent nucleus. Our statistical model analysis suggested J <= 3 for the unknown ground-state spin of the odd-odd nucleus Ga-86, from the I gamma(4(+)-> 2(+))/I-gamma(2(+)-> 0(+)) ratio of Ga-84 and the P-2n/P-1n ratio. These results show the necessity of detailed understanding of the decay scheme, including data from neutron spectroscopy, in addition to gamma measurements of the multineutron emitters.
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