Cluster and toroidal aspects of isoscalar dipole excitations in $^{12}$C
Abstract
We investigated cluster and toroidal aspects of isoscalar dipole excitations in C based on the shifted basis antisymmetrized molecular dynamics combined with the generator coordinate method, which can describes 1p-1h excitations and dynamics. In the MeV region, we found two low-energy dipole modes separating from the giant dipole resonance. One is the developed -cluster state and the other is the toroidal dipole mode. The cluster state is characterized by the large amplitude cluster motion beyond the 1p-1h model space, whereas the toroidal dipole mode is predominantly described by 1p-1h excitations on the ground state. The low-energy dipole states are remarkably excited by the toroidal dipole operator, which can measure the nuclear vorticity. For compressive dipole transition strengths, a major part is distributed in the MeV region for the giant dipole resonance, and 5\% of the total energy weighted sum exist in the MeV region.
Keywords
Cite
@article{arxiv.1709.03045,
title = {Cluster and toroidal aspects of isoscalar dipole excitations in $^{12}$C},
author = {Yoshiko Kanada-En'yo and Yuki Shikata and Horiyuki Morita},
journal= {arXiv preprint arXiv:1709.03045},
year = {2018}
}
Comments
9 pages, 7 figures