English

Direct Evidence of Octupole Deformation in Neutron-Rich $^{144}$Ba

Nuclear Experiment 2016-03-23 v1

Abstract

The neutron-rich nucleus 144^{144}Ba (t1/2t_{1/2}=11.5 s) is expected to exhibit some of the strongest octupole correlations among nuclei with mass numbers AA less than 200. Until now, indirect evidence for such strong correlations has been inferred from observations such as enhanced E1E1 transitions and interleaving positive- and negative-parity levels in the ground-state band. In this experiment, the octupole strength was measured directly by sub-barrier, multi-step Coulomb excitation of a post-accelerated 650-MeV 144^{144}Ba beam on a 1.0-mg/cm2^2 208^{208}Pb target. The measured value of the matrix element, 31M(E3)01+=0.65(23+17)\langle 3_1^- \| \mathcal{M}(E3) \| 0_1^+ \rangle=0.65(^{+17}_{-23}) eeb3/2^{3/2}, corresponds to a reduced B(E3)B(E3) transition probability of 48(34+25^{+25}_{-34}) W.u. This result represents an unambiguous determination of the octupole collectivity, is larger than any available theoretical prediction, and is consistent with octupole deformation.

Keywords

Cite

@article{arxiv.1602.01485,
  title  = {Direct Evidence of Octupole Deformation in Neutron-Rich $^{144}$Ba},
  author = {B. Bucher and S. Zhu and C. Y. Wu and R. V. F. Janssens and D. Cline and A. B. Hayes and M. Albers and A. D. Ayangeakaa and P. A. Butler and C. M. Campbell and M. P. Carpenter and C. J. Chiara and J. A. Clark and H. L. Crawford and M. Cromaz and H. M. David and C. Dickerson and E. T. Gregor and J. Harker and C. R. Hoffman and B. P. Kay and F. G. Kondev and A. Korichi and T. Lauritsen and A. O. Macchiavelli and R. C. Pardo and A. Richard and M. A. Riley and G. Savard and M. Scheck and D. Seweryniak and M. K. Smith and R. Vondrasek and A. Wiens},
  journal= {arXiv preprint arXiv:1602.01485},
  year   = {2016}
}

Comments

5 pages, 2 figures, 1 table, Physical Review Letters 2016