Partial conservation of seniority and its unexpected influence on E2 transitions in $g_{9/2}$ nuclei
Abstract
There exist two uniquely defined states in systems within a subshell, which automatically conserve seniority and do not mix with other states. Here I show that the partial conservation of seniority plays an essential role in our understanding of the electric quadrupole transitions of the semimagic nuclei involving subshells, including the long-lived isomer in Ru. The effects of configuration mixing from neighboring subshells on the structure of those unique states are analysed. It is shown that a sharp transition from pure seniority coupling to a significant mixture between the and states may be induced by the cross-orbital non-diagonal interaction matrix elements. Such strong mixture is essential to explain the observed E2 transition properties of isotones Pd and Ru.
Cite
@article{arxiv.1810.07747,
title = {Partial conservation of seniority and its unexpected influence on E2 transitions in $g_{9/2}$ nuclei},
author = {Chong Qi},
journal= {arXiv preprint arXiv:1810.07747},
year = {2018}
}