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g Factor of the Zr99 ( 7/2+ ) Isomer: Monopole Evolution in the Shape-Coexisting Region

Authors :
Naoki Fukuda
T. Nishizaka
Georgi Georgiev
Ish Mukul
Megumi Niikura
W. Kim
D. L. Balabanski
A. Kusoglu
Yoji Kobayashi
Koichiro Asahi
Hiroki Nishibata
T. Egami
DeukSoon Ahn
S. Kisyov
Yuichi Ohtomo
Yoko Ishibashi
Hiroshi Suzuki
K. Imamura
Gary Simpson
T. Kawaguchi
L. C. Tao
T. Fujita
Satoru Momiyama
Michael Hass
A. Gladkov
C. Funayama
Atsuko Odahara
Takuso Sato
Takashi Kawamura
Naohito Inabe
J. M. Daugas
R. Lozeva
F. Boulay
Hiroaki Ueno
Shuichiro Kojima
D. Ralet
Takeshi Furukawa
Toshiyuki Sumikama
Y. Shimizu
H. Yamazaki
D. Tominaga
Yasuhiro Togano
H. Baba
Yuichi Ichikawa
Xiaofei Yang
A. Takamine
D. Bucurescu
H. Takeda
Source :
Physical Review Letters. 124
Publication Year :
2020
Publisher :
American Physical Society (APS), 2020.

Abstract

The gyromagnetic factor of the low-lying E=251.96(9) keV isomeric state of the nucleus ^{99}Zr was measured using the time-dependent perturbed angular distribution technique. This level is assigned a spin and parity of J^{π}=7/2^{+}, with a half-life of T_{1/2}=336(5) ns. The isomer was produced and spin aligned via the abrasion-fission of a ^{238}U primary beam at RIKEN RIBF. A magnetic moment |μ|=2.31(14)μ_{N} was deduced showing that this isomer is not single particle in nature. A comparison of the experimental values with interacting boson-fermion model IBFM-1 results shows that this state is strongly mixed with a main νd_{5/2} composition. Furthermore, it was found that monopole single-particle evolution changes significantly with the appearance of collective modes, likely due to type-II shell evolution.

Details

ISSN :
10797114 and 00319007
Volume :
124
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi...........0ebfe631346bf5c22bd0017a87de57e1
Full Text :
https://doi.org/10.1103/physrevlett.124.112501