Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8186992 | Physics Letters B | 2018 | 5 Pages |
Abstract
A Coulomb-excitation reorientation-effect measurement using the TIGRESS γâray spectrometer at the TRIUMF/ISAC II facility has permitted the determination of the ã21+âE2Ëâ21+ã diagonal matrix element in 12C from particleâγ coincidence data and state-of-the-art no-core shell model calculations of the nuclear polarizability. The nuclear polarizability for the ground and first-excited (21+) states in 12C have been calculated using chiral NN N4LO500 and NN+3NF350 interactions, which show convergence and agreement with photo-absorption cross-section data. Predictions show a change in the nuclear polarizability with a substantial increase between the ground state and first excited 21+ state at 4.439 MeV. The polarizability of the 21+ state is introduced into the current and previous Coulomb-excitation reorientation-effect analyses of 12C. Spectroscopic quadrupole moments of QS(21+)=+0.053(44) eb and QS(21+)=+0.08(3) eb are determined, respectively, yielding a weighted average of QS(21+)=+0.071(25) eb, in agreement with recent ab initio calculations. The present measurement confirms that the 21+ state of 12C is oblate and emphasizes the important role played by the nuclear polarizability in Coulomb-excitation studies of light nuclei.
Keywords
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
M. Kumar Raju, J.N. Orce, P. Navrátil, G.C. Ball, T.E. Drake, S. Triambak, G. Hackman, C.J. Pearson, K.J. Abrahams, E.H. Akakpo, H. Al Falou, R. Churchman, D.S. Cross, M.K. Djongolov, N. Erasmus, P. Finlay, A.B. Garnsworthy, P.E. Garrett, J. Wong,