Back to Search Start Over

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

Authors :
N, Mărginean
D, Little
Y, Tsunoda
S, Leoni
R V F, Janssens
B, Fornal
T, Otsuka
C, Michelagnoli
L, Stan
F C L, Crespi
C, Costache
R, Lica
M, Sferrazza
A, Turturica
A D, Ayangeakaa
K, Auranen
M, Barani
P C, Bender
S, Bottoni
M, Boromiza
A, Bracco
S, Călinescu
C M, Campbell
M P, Carpenter
P, Chowdhury
M, Ciemała
N, Cieplicka-Oryǹczak
D, Cline
C, Clisu
H L, Crawford
I E, Dinescu
J, Dudouet
D, Filipescu
N, Florea
A M, Forney
S, Fracassetti
A, Gade
I, Gheorghe
A B, Hayes
I, Harca
J, Henderson
A, Ionescu
Ł W, Iskra
M, Jentschel
F, Kandzia
Y H, Kim
F G, Kondev
G, Korschinek
U, Köster
Krishichayan
M, Krzysiek
T, Lauritsen
J, Li
R, Mărginean
E A, Maugeri
C, Mihai
R E, Mihai
A, Mitu
P, Mutti
A, Negret
C R, Niţă
A, Olăcel
A, Oprea
S, Pascu
C, Petrone
C, Porzio
D, Rhodes
D, Seweryniak
D, Schumann
C, Sotty
S M, Stolze
R, Şuvăilă
S, Toma
S, Ujeniuc
W B, Walters
C Y, Wu
J, Wu
S, Zhu
S, Ziliani
Source :
Physical review letters. 125(10)
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

ISSN :
10797114
Volume :
125
Issue :
10
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid..........15d14545e8c2a9bc91d82b0e3787c2a9