Abstract No: |
006
|
Submitted on: |
19 Dec 2000, 17:37 GMT
|
Title: |
Measurements of spectroscopic quadrupole moments at high spins: test
of the Tilted Axis Cranking (TAC) model
|
Author(s): |
D.L. Balabanski,1,2 K. Vyvey,1 G. Neyens,1 D. Boremans,1
N. Coulier,1 W. De Clercq,1 R. Coussement,1, G. Georgiev,1,2
A. Lèpine-Szily,1,3 S. Ternier,1 S. Teughels,1 M. Mineva,4
P.M. Walker,5 H. Hubel,6 S. Chmel,6 N. Nenoff,6 D. Rossbach,6
R.Schwengener,7 P. Blaha,8 D. Almehed7 and S. Frauendorf7,9
|
Affiliation(s): |
1IKS, University of Leuven, B-3001 Leuven, Belgium,
2Faculty of Physics, University of Sofia, BG-1164 Sofia, Bulgaria,
3IFU, Sao Paulo, CP 20156, Sao Paulo, Brazil,
4Department of Physics, Lund University, S-221 00 Lund, Sweden,
5Department of Physics, University of Surrey, Guilford GU2 7XH, UK,
6ISKP, University of Bonn, D-53115 Bonn, Germany,
7IKHP, Forschungszentrum Rossendorf, D-01314 Dresden, Germany,
8IPTC, Technical University Vienna, A-1060 vienna, Austria,
9Department of Physics, University of Notre Dame, Indiana 46556, USA
|
Several measurements of spectroscopic quadrupole moments of
high-spin isomers ware carried out recently at the CYCLONE facility at
Louvain-la-Neuve, using the
vel
ixing
pectroscopy (LEMS) technique [1]. All
of them aimed to test the predictions of the
ilted
xis
ranking (TAC) model [2]
The spectroscopic quadrupole moment of the high-spin, high-K five-quasiparticle isomer ( , ns, Ei=3349 keV) in 179W was found to be Qs=4.00(+0.83-1.06) eb, which corresponds to an intrinsic quadrupole moment Q0=4.73(+0.98-1.25) eb and to a quadrupole deformation . These values differ significantly from the deduced ground-state quadrupole moments and deformations and are in disagreement with the current theoretical predictions in this mass region [3].
In another experiment we have measured the spectroscopic quadrupole moment of the isomer in 196Pb. This isomer has the same proton configuration as the bandhead of the magnetic band in 196Pb, which allows to deduce the quadrupole moment of the 16(-) state as Qs=-0.316(97) eb. This is the first experimental determination of the quadrupole moment of a magnetic rotational bandhead. Its small value proves the nearly sphericity of the magnetic bandhead [4].