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Masses of ground and isomeric states of In101 and configuration-dependent shell evolution in odd- A indium isotopes

Authors :
R.J. Chen
X. H. Zhou
Yoshitaka Yamaguchi
Qingqi Zeng
Takayuki Yamaguchi
M. Si
Y. M. Xing
Y. H. Lam
Qun-Yao Wang
X. C. Chen
Yu. A. Litvinov
Bingshui Gao
M. Z. Sun
Shigeru Kubono
Y. H. Zhang
G. Audi
C. X. Yuan
You-Jin Yuan
C. Y. Fu
M. Wang
Klaus Blaum
S. Naimi
Xiao-Lin Tu
Yu Sun
Xurong Xu
W. L. Zhan
X. K. Zhou
Jiayu Liu
Ping Shuai
Kazunari Kaneko
Sergey Litvinov
Jiuyang He
X. L. Yan
Bao-Hua Sun
Ming-Zheng Liu
Xiu-Wen Ma
Tomohiro Uesaka
A. Ozawa
Hongfu Li
H. S. Xu
J.C. Yang
Pengli Zhang
Furong Xu
Source :
Physical Review C. 100
Publication Year :
2019
Publisher :
American Physical Society (APS), 2019.

Abstract

We report first precision mass measurements of the $1/2^-$ isomeric and $9/2^+$ ground states of $^{101}$In. The determined isomeric excitation energy continues a smooth trend of odd-$A$ indium isotopes up to the immediate vicinity of $N=50$ magic number. This trend can be confirmed by dedicated shell model calculations only if the neutron configuration mixing is considered. We find that the single particle energies are different for different states of the same isotope. The presented configuration-dependent shell evolution, type II shell evolution, in odd-$A$ nuclei is discussed for the first time. Our results will facilitate future studies of single-particle neutron states.

Details

ISSN :
24699993 and 24699985
Volume :
100
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........ad75eb601dff63a51c768c14b2d6903b
Full Text :
https://doi.org/10.1103/physrevc.100.051303