Correlating Schiff Moments in the Light Actinides with Octupole Moments
Dobaczewski, J., Engel, J., Kortelainen, M., & Becker, P. (2018). Correlating Schiff Moments in the Light Actinides with Octupole Moments. Physical Review Letters, 121(23), Article 232501. https://doi.org/10.1103/physrevlett.121.232501
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Physical Review LettersDate
2018Copyright
© 2017 American Physical Society.
To explore the nature of collective modes in weakly bound nuclei, we have investigated deformation effects and
surface flow patterns of isovector dipole modes in a shape-coexisting nucleus, 40Mg. The calculations were done in
a fully self-consistent continuum finite-amplitude quasiparticle random phase approximation in a large deformed
spatial mesh. An unexpected result of pygmy and giant dipole modes having disproportionate deformation
splittings in strength functions was obtained. Furthermore, the transition current densities demonstrate that the
long-sought core-halo oscillation in pygmy resonances is collective and compressional, corresponding to the
lowest excitation energy and the simplest quantum flow topology. Our calculations show that surface flow
patterns become more complicated as excitation energies increase.
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