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Shape Coexistence at Zero Spin in ^{64}Ni Driven by the Monopole Tensor Interaction.

Authors :
Mărginean N
Little D
Tsunoda Y
Leoni S
Janssens RVF
Fornal B
Otsuka T
Michelagnoli C
Stan L
Crespi FCL
Costache C
Lica R
Sferrazza M
Turturica A
Ayangeakaa AD
Auranen K
Barani M
Bender PC
Bottoni S
Boromiza M
Bracco A
Călinescu S
Campbell CM
Carpenter MP
Chowdhury P
Ciemała M
Cieplicka-Oryǹczak N
Cline D
Clisu C
Crawford HL
Dinescu IE
Dudouet J
Filipescu D
Florea N
Forney AM
Fracassetti S
Gade A
Gheorghe I
Hayes AB
Harca I
Henderson J
Ionescu A
Iskra ŁW
Jentschel M
Kandzia F
Kim YH
Kondev FG
Korschinek G
Köster U
Krishichayan
Krzysiek M
Lauritsen T
Li J
Mărginean R
Maugeri EA
Mihai C
Mihai RE
Mitu A
Mutti P
Negret A
Niţă CR
Olăcel A
Oprea A
Pascu S
Petrone C
Porzio C
Rhodes D
Seweryniak D
Schumann D
Sotty C
Stolze SM
Şuvăilă R
Toma S
Ujeniuc S
Walters WB
Wu CY
Wu J
Zhu S
Ziliani S
Source :
Physical review letters [Phys Rev Lett] 2020 Sep 04; Vol. 125 (10), pp. 102502.
Publication Year :
2020

Abstract

The low-spin structure of the semimagic ^{64}Ni nucleus has been considerably expanded: combining four experiments, several 0^{+} and 2^{+} excited states were identified below 4.5 MeV, and their properties established. The Monte Carlo shell model accounts for the results and unveils an unexpectedly complex landscape of coexisting shapes: a prolate 0^{+} excitation is located at a surprisingly high energy (3463 keV), with a collective 2^{+} state 286 keV above it, the first such observation in Ni isotopes. The evolution in excitation energy of the prolate minimum across the neutron N=40 subshell gap highlights the impact of the monopole interaction and its variation in strength with N.

Details

Language :
English
ISSN :
1079-7114
Volume :
125
Issue :
10
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
32955302
Full Text :
https://doi.org/10.1103/PhysRevLett.125.102502