Δl=1 and Δl=3 couplings act synergistically to drive octupole deformation, requiring a revised paradigm for reflection asymmetry in nuclei.
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Octupole correlations within the IBM-DFT framework generate low-energy 0+ states that account for the abrupt changes in two-neutron transfer intensities at N≈88-90 in rare-earth nuclei.
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$\Delta l =1$ coupling of single-particle orbitals in octupole deformed nuclei
Δl=1 and Δl=3 couplings act synergistically to drive octupole deformation, requiring a revised paradigm for reflection asymmetry in nuclei.
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Octupole correlation effects on two-neutron transfer intensity in rare-earth nuclei
Octupole correlations within the IBM-DFT framework generate low-energy 0+ states that account for the abrupt changes in two-neutron transfer intensities at N≈88-90 in rare-earth nuclei.