arXiv · 2401.11729
Weakening of $N=28$ shell gap and the nature of $0_2^+$ states
Abstract
The work reports a novel application of the interacting boson model in light-mass region around $^{48}$Ca, that takes into account intruder states and configuration mixing. The model is shown to provide a reasonable description of the observed low-lying yrast and yrare states of the $N=28$ even-even isotones from Si to Fe, and even-even Ca isotopes. The nature of $0_2^+$ states is addressed in terms of the competition between spherical and deformed intruder configurations, and the rigidity of the $N=28$ shell gap is tested. The $0_2^+$ isomer in $^{44}$S is shown to arise from a weak mixing between the two configurations. The unresolved low-lying spectra in $^{46}$Ar is also approached using the core-excitations across $N=28$ shell. The SU(3) structure in $^{42}$Si is supported by the present calculation. The nearly spherical nature of $^{50}$Ti, $^{52}$Cr, $^{54}$Fe and $^{42,44,46}$Ca isotopes is found, while the core excitations are found to be essential for the description of yrare states. Shell model calculation is also performed for comparison.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Bhoomika Maheshwari, Kosuke Nomura. 2024-01-22. Weakening of $N=28$ shell gap and the nature of $0_2^+$ states. https://doi.org/10.1088/1361-6471%2Fad6170
Cite the original work for its findings. Save a collection to share your selection of sources.