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High-spin states in Cs133 and the shell model description

Authors :
Anil Raghav
Md. S. R. Laskar
B. S. Naidu
S. Sihotra
V. V. Parkar
P. K. Joshi
H. C. Jain
Z. Naik
A. Y. Deo
Sathi Sharma
Savita Jadhav
R. Donthi
S. Biswas
S. Saha
G. Mukherjee
J. Sethi
D. Mehta
U. Garg
P. C. Srivastava
R. Palit
S. Kumar
Anindya Goswami
F. S. Babra
Source :
Physical Review C. 95
Publication Year :
2017
Publisher :
American Physical Society (APS), 2017.

Abstract

The high-spin states in $^{133}\mathrm{Cs}$, populated using the reaction $^{130}\mathrm{Te}(^{7}\mathrm{Li},4n)$ with 45-MeV beam energy, have been extended up to an excitation energy of 5.265 MeV using the Indian National Gamma Array. The observed one- and three-quasiparticle bands in $^{133}\mathrm{Cs}$, built on the $\ensuremath{\pi}{h}_{11/2},\phantom{\rule{0.28em}{0ex}}\ensuremath{\pi}{g}_{7/2}$, $\ensuremath{\pi}{d}_{5/2}$; and ${(\ensuremath{\pi}{g}_{7/2}\ensuremath{\pi}{d}_{5/2})}^{1}\ensuremath{\bigotimes}\ensuremath{\nu}{h}_{11/2}^{\ensuremath{-}2}$ configurations, respectively, have similar structure as seen in the lighter odd-$A$ Cs isotopes. The experimental level scheme has been compared with the large-scale shell model calculation without truncation using the $jj55pna$ interaction, showing a good agreement for both positive- and negative-parity states.

Details

ISSN :
24699993 and 24699985
Volume :
95
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........5291ff2f5a9ec1c23d84ee56cde8f4a8