Back to Search Start Over

Multifaceted Quadruplet of Low-Lying Spin-Zero States in Ni 66: Emergence of Shape Isomerism in Light Nuclei

Authors :
Leoni, Silvia
Fornal, B.
Marginean, N.
Sferrazza, Michele
Tsunoda, Yusuke
Otsuka, Takaharu
Bocchi, G.
Crespi, Fabio Celso Luigi
Bracco, Angela
Aydin, Salih
Boromiza, M
Bucurescu, D
Cieplicka-Oryńczak, N.
Costache, C
Calinescu, S.
Florea, N
Ghita, D.G
Glodariu, T.
Ionescu, A
Iskra, L.W
Krzysiek, M
Marginean, R
Mihai, C
Mihai, R.E
Mitu, A.
Negret, Alexandru
Nita, C.R
Olacel, A
Oprea, A
Pascu, S
Petkov, P
Petrone, C.
Porzio, Giovanni
Serban, A
Sotty, C
Stan, L
Stiru, I
Stroe, L
Suvaila, R
Toma, S
Turturica, A
Ujeniuc, S
Ur, C.A.
Leoni, Silvia
Fornal, B.
Marginean, N.
Sferrazza, Michele
Tsunoda, Yusuke
Otsuka, Takaharu
Bocchi, G.
Crespi, Fabio Celso Luigi
Bracco, Angela
Aydin, Salih
Boromiza, M
Bucurescu, D
Cieplicka-Oryńczak, N.
Costache, C
Calinescu, S.
Florea, N
Ghita, D.G
Glodariu, T.
Ionescu, A
Iskra, L.W
Krzysiek, M
Marginean, R
Mihai, C
Mihai, R.E
Mitu, A.
Negret, Alexandru
Nita, C.R
Olacel, A
Oprea, A
Pascu, S
Petkov, P
Petrone, C.
Porzio, Giovanni
Serban, A
Sotty, C
Stan, L
Stiru, I
Stroe, L
Suvaila, R
Toma, S
Turturica, A
Ujeniuc, S
Ur, C.A.
Source :
Physical review letters, 118 (16
Publication Year :
2017

Abstract

A search for shape isomers in the Ni66 nucleus was performed, following old suggestions of various mean-field models and recent ones, based on state-of-the-art Monte Carlo shell model (MCSM), all considering Ni66 as the lightest nuclear system with shape isomerism. By employing the two-neutron transfer reaction induced by an O18 beam on a Ni64 target, at the sub-Coulomb barrier energy of 39 MeV, all three lowest-excited 0+ states in Ni66 were populated and their γ decay was observed by γ-coincidence technique. The 0+ states lifetimes were assessed with the plunger method, yielding for the 02+, 03+, and 04+ decay to the 21+ state the B(E2) values of 4.3, 0.1, and 0.2 Weisskopf units (W.u.), respectively. MCSM calculations correctly predict the existence of all three excited 0+ states, pointing to the oblate, spherical, and prolate nature of the consecutive excitations. In addition, they account for the hindrance of the E2 decay from the prolate 04+ to the spherical 21+ state, although overestimating its value. This result makes Ni66 a unique nuclear system, apart from U236,238, in which a retarded γ transition from a 0+ deformed state to a spherical configuration is observed, resembling a shape-isomerlike behavior.<br />SCOPUS: ar.j<br />info:eu-repo/semantics/published

Details

Database :
OAIster
Journal :
Physical review letters, 118 (16
Notes :
No full-text files, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn994551753
Document Type :
Electronic Resource