Isoscalar monopole and dipole transitions in $^{24}$Mg, $^{26}$Mg and $^{28}$Si
Abstract
Nuclei in the -shell demonstrate a remarkable interplay of cluster and mean-field phenomena. The nuclei, such as Mg and Si, have been the focus of the theoretical study of both these phenomena in the past. The cluster and vortical mean-field phenomena can be probed by excitation of isoscalar monopole and dipole states in scattering of isoscalar particles such as deuterons or particles. Inelastically scattered particles were momentum-analysed in the K600 magnetic spectrometer at iThemba LABS, Cape Town, South Africa. The scattered particles were detected in two multi-wire drift chambers and two plastic scintillators placed at the focal plane of the K600. In the theoretical discussion, the QRPA and AMD+GCM were used. The QRPA calculations lead us to conclude that: i) the mean-field vorticity appears mainly in dipole states with , ii) the dipole (monopole) states should have strong deformation-induced octupole (quadrupole) admixtures, and iii) that near the -particle threshold, there should exist a collective state (with for prolate nuclei and for oblate nuclei) with an impressive octupole strength. The results of the AMD+GCM calculations suggest that some observed states may have a mixed (mean-field + cluster) character or correspond to particular cluster configurations. A tentative correspondence between observed states and theoretical states from QRPA and AMD+GCM was established. The QRPA and AMD+GCM analysis shows that low-energy isoscalar dipole states combine cluster and mean-field properties. The QRPA calculations show that the low-energy vorticity is well localized in Mg, fragmented in Mg, and absent in Si.
Cite
@article{arxiv.2010.08507,
title = {Isoscalar monopole and dipole transitions in $^{24}$Mg, $^{26}$Mg and $^{28}$Si},
author = {P. Adsley and V. O. Nesterenko and M. Kimura and L. M. Donaldson and R. Neveling and J. W. Brümmer and D. G. Jenkins and N. Y. Kheswa and J. Kvasil and K. C. W. Li and D. J. Marin-Lámbarri and Z. Mabika and P. Papka and L. Pellegri and V. Pesudo and B. Rebeiro and P. -G. Reinhard and F. D. Smit and W. Yahia-Cherif},
journal= {arXiv preprint arXiv:2010.08507},
year = {2021}
}
Comments
11 figures, 18ish pages, accepted in Phys Rev C