paper

Charge-independent trend of isoscalar matrix elements along the line

arXiv:nucl-th/0603030 · doi:10.1016/j.nuclphysa.2005.09.023

Abstract

Shell model calculations have been carried out using the m-scheme numerical code {\small ANTOINE} in order to elucidate the particular trend of the isoscalar matrix elements, , for isobaric triplets ranging from A=18 to A=42. The 2 0 transition energies, reduced transition probabilities and isoscalar matrix elements are predicted to a high degree of accuracy. The general agreement of between those from mirror pairs and those from nuclides support our shell model calculations. The predicted results tie together recent experimental data, and the trend of strength along the and beginning of the shells is interpreted in terms of the dynamic shell structure. Certain discrepancies arise at A=18 and A=38 isobaric triplets, which might be explained in terms of core polarization effects and the low occupancy of the orbits at the extremes of the shell.

7 pages, 3 figs

Charge-independent trend of isoscalar matrix elements along the $N \sim Z$ line · wovepaper