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Lifetime measurements in Ti44

Authors :
B. Siebeck
D. Werner
P. Reiter
M. Seidlitz
C. Fransen
K. Wolf
A. Dewald
K. O. Zell
D. Rosiak
L. Lewandowski
A. Vogt
L. Kaya
Thomas Braunroth
R. Hirsch
C. Müller-Gatermann
A. Blazhev
R. Hetzenegger
A. Goldkuhle
K. Arnswald
M. Droste
P. Petkov
E. Hoemann
Source :
Physical Review C. 102
Publication Year :
2020
Publisher :
American Physical Society (APS), 2020.

Abstract

Lifetimes of excited nuclear states were determined in $^{44}\mathrm{Ti}$ using the recoil distance Doppler-shift technique and the Doppler-shift attenuation method. Results from the ${K}^{\ensuremath{\pi}}={3}^{\ensuremath{-}}$ band confirm isospin-symmetry breaking for the ${3}_{1}^{\ensuremath{-}}\ensuremath{\rightarrow}{2}_{1}^{+}\phantom{\rule{4pt}{0ex}}E1$ transition. The lifetime of the ${4}_{1}^{\ensuremath{-}}$ state differs considerably from the previously known value. Good agreement is found for the ${4}_{1}^{+}$ and ${6}_{1}^{+}$ level lifetimes with respect to previous values. The experimental values are compared with large-scale shell-model calculations employing established interactions in the $0f1p$ shell, as well as a modern effective Hamiltonian including multiparticle multihole cross-shell configurations. Extended configuration spaces of this shell-model calculation allow for a detailed comparison with newly determined negative-parity states.

Details

ISSN :
24699993 and 24699985
Volume :
102
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........d8b35a4cf4b5a4b43bb419d6cebd30e5