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Manifestation of the Berry phase in the atomic nucleus 213Pb

Authors :
J.J. Valiente-Dobón
A. Gottardo
G. Benzoni
A. Gadea
S. Lunardi
A. Algora
G. de Angelis
D. Bazzacco
J. Benlliure
P. Boutachkov
A. Bracco
A.M. Bruce
F. Camera
E. Casarejos
M.L. Cortés
F.C.L. Crespi
A. Corsi
C. Domingo-Pardo
M. Doncel
T. Engert
H. Geissel
J. Gerl
A. Goasduff
N. Goel
M. Górska
J. Grebosz
E. Gregor
T. Habermann
S. Klupp
I. Kojouharov
N. Kurz
S.M. Lenzi
S. Leoni
S. Mandal
R. Menegazzo
D. Mengoni
B. Million
A.I. Morales
D.R. Napoli
F. Naqvi
C. Nociforo
M. Pfützner
S. Pietri
Zs. Podolyák
A. Prochazka
F. Recchia
P.H. Regan
D. Rudolph
E. Sahin
H. Schaffner
A. Sharma
B. Sitar
D. Siwal
P. Strmen
I. Szarka
C.A. Ur
P.M. Walker
H. Weick
O. Wieland
H.-J. Wollersheim
P. Van Isacker
Source :
Physics Letters B, Vol 816, Iss , Pp 136183- (2021)
Publication Year :
2021
Publisher :
Elsevier, 2021.

Abstract

The neutron-rich 213Pb isotope was produced in the fragmentation of a primary 1 GeV A 238U beam, separated in FRS in mass and atomic number, and then implanted for isomer decay γ-ray spectroscopy with the RISING setup at GSI. A newly observed isomer and its measured decay properties indicate that states in 213Pb are characterized by the seniority quantum number that counts the nucleons not in pairs coupled to angular momentum J=0. The conservation of seniority is a consequence of a geometric phase associated with particle-hole conjugation, which becomes observable in semi-magic nuclei where nucleons half-fill the valence shell. The γ-ray spectroscopic observables in 213Pb are thus found to be driven by two mechanisms, particle-hole conjugation and seniority conservation, which are intertwined through a Berry phase.

Subjects

Subjects :
Physics
QC1-999

Details

Language :
English
ISSN :
03702693
Volume :
816
Issue :
136183-
Database :
Directory of Open Access Journals
Journal :
Physics Letters B
Publication Type :
Academic Journal
Accession number :
edsdoj.7e237baf2044df6bd83b1fbccf89f15
Document Type :
article
Full Text :
https://doi.org/10.1016/j.physletb.2021.136183