2013
DOI: 10.1007/s11434-013-0004-9
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Improved descriptions of collective and non-collective rotations in the superheavy nucleus 256Rf

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Cited by 5 publications
(2 citation statements)
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“…The increased hindrance in fission of multi-qp states can be attributed to the reduced superfluity and increased fission barrier due to unpaired nucleons. In general, the fission barrier of a multi-qp state is higher and wider than that of the corresponding ground state in our configuration-constrained PES calculations [25,26,44,59]. It is found that the β 6 deformation contributes to the increased fission barrier height [26,59].…”
mentioning
confidence: 58%
“…The increased hindrance in fission of multi-qp states can be attributed to the reduced superfluity and increased fission barrier due to unpaired nucleons. In general, the fission barrier of a multi-qp state is higher and wider than that of the corresponding ground state in our configuration-constrained PES calculations [25,26,44,59]. It is found that the β 6 deformation contributes to the increased fission barrier height [26,59].…”
mentioning
confidence: 58%
“…The resulting Woods-Saxon-Strutinsky PES calculations contributed usefully to the understanding of multi-quasiparticle states in well-deformed nuclei [24,45,46], but most importantly the methodology opened up the possibilities to calculate energies, shapes, charge radii and configurations in soft and shape-transitional nuclei [47][48][49][54][55][56][57][58][59][60][61][62]. For example, as illustrated in figure 5, the early work [24] showed that the K 25 = p + isomer in 182 Os is γ-soft, i.e.…”
Section: Configuration-constrained Energy Surfacesmentioning
confidence: 99%