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Magnetic moments of thallium isotopes in the vicinity of magic N = 126

Authors :
Z. Yue
A.N. Andreyev
A.E. Barzakh
I.N. Borzov
J.G. Cubiss
A. Algora
M. Au
M. Balogh
S. Bara
R.A. Bark
C. Bernerd
M.J.G. Borge
D. Brugnara
K. Chrysalidis
T.E. Cocolios
H. De Witte
Z. Favier
L.M. Fraile
H.O.U. Fynbo
A. Gottardo
R. Grzywacz
R. Heinke
A. Illana
P.M. Jones
D.S. Judson
A. Korgul
U. Köster
M. Labiche
L. Le
R. Lica
M. Madurga
N. Marginean
B. Marsh
C. Mihai
E. Nácher
C. Neacsu
C. Nita
B. Olaizola
J.N. Orce
C.A.A. Page
R.D. Page
J. Pakarinen
P. Papadakis
G. Penyazkov
A. Perea
M. Piersa-Siłkowska
Zs. Podolyák
S.D. Prosnyak
E. Reis
S. Rothe
M. Sedlak
L.V. Skripnikov
C. Sotty
S. Stegemann
O. Tengblad
S.V. Tolokonnikov
J.M. Udías
P. Van Duppen
N. Warr
W. Wojtaczka
Source :
Physics Letters B, Vol 849, Iss , Pp 138452- (2024)
Publication Year :
2024
Publisher :
Elsevier, 2024.

Abstract

The magnetic dipole moments (μ) of 209Tlg (N=128) and 207Tlm (N=126) have been measured for the first time using the in-source laser resonance-ionization spectroscopy technique with the Laser Ion Source and Trap (LIST) at ISOLDE (CERN). The application of the LIST suppresses the usually overwhelming background of the isobaric francium isotopes and allows access to heavy thallium isotopes with A⩾207. The self-consistent theory of finite Fermi systems based on the energy density functional by Fayans et al. well describes the N dependence of μ for 1/2+ thallium ground states, as well as μ for the 11/2− isomeric states in europium, gold and thallium isotopes. The inclusion of particle-vibration coupling leads to a better agreement between the theory and experiment for μ(Tlg, Iπ=1/2+). It is shown that beyond mean-field contributions to μ cannot be neglected at least for thallium isotopes with Iπ=1/2+.

Details

Language :
English
ISSN :
03702693
Volume :
849
Issue :
138452-
Database :
Directory of Open Access Journals
Journal :
Physics Letters B
Publication Type :
Academic Journal
Accession number :
edsdoj.36d0dfc0dbdb478aab773491fa2e0b59
Document Type :
article
Full Text :
https://doi.org/10.1016/j.physletb.2024.138452