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Shell Evolution towards Ni78 : Low-Lying States in Cu77

Authors :
Hirofumi Watanabe
Atsuko Odahara
Giuseppe Lorusso
D. Mengoni
Megumi Niikura
K. Matsui
Tomio Kubo
H. Schaffner
Zs. Vajta
I. Stefan
F. Browne
Takaharu Otsuka
Toshiyuki Sumikama
Z. H. Li
I. Kojouharov
M.-C. Delattre
D. Suzuki
Shin-Ichiro Nishimura
Hiroki Nishibata
G. de Angelis
K. Yoshinaga
T. Isobe
Dóra Sohler
Ryo Taniuchi
G. Gey
P. Morfouace
I. Matea
Yusuke Tsunoda
S. Franchoo
K. Hadyńska-Klȩk
H. S. Jung
Jan Taprogge
Zhengyu Xu
Hiroyoshi Sakurai
D. R. Napoli
V. Werner
Andreas Görgen
M. Yalcinkaya
Ayumi Yagi
E. Sahin
P. R. John
F. L. Bello Garrote
P. Doornenbal
P. A. Söderström
F. Naqvi
H. Baba
Jinguang Wu
N. Kurz
Source :
Physical Review Letters. 118
Publication Year :
2017
Publisher :
American Physical Society (APS), 2017.

Abstract

The level structure of the neutron-rich ^{77}Cu nucleus is investigated through β-delayed γ-ray spectroscopy at the Radioactive Isotope Beam Factory of the RIKEN Nishina Center. Ions of ^{77}Ni are produced by in-flight fission, separated and identified in the BigRIPS fragment separator, and implanted in the WAS3ABi silicon detector array, surrounded by Ge cluster detectors of the EURICA array. A large number of excited states in ^{77}Cu are identified for the first time by correlating γ rays with the β decay of ^{77}Ni, and a level scheme is constructed by utilizing their coincidence relationships. The good agreement between large-scale Monte Carlo shell model calculations and experimental results allows for the evaluation of the single-particle structure near ^{78}Ni and suggests a single-particle nature for both the 5/2_{1}^{-} and 3/2_{1}^{-} states in ^{77}Cu, leading to doubly magic ^{78}Ni.

Details

ISSN :
10797114 and 00319007
Volume :
118
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi...........64cc18a940763dc88f7327b089f82c9a