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- W1969115871 abstract "In this contribution we present some results of potential energy surfaces of actinide and transfermium nuclei from multi-dimensional constrained relativistic mean field (MDC-RMF) models. Recently we developed multi-dimensional constrained covariant density functional theories (MDC-CDFT) in which all shape degrees of freedom $beta_{lambdamu}$ with even $mu$ are allowed and the functional can be one of the following four forms: the meson exchange or point-coupling nucleon interactions combined with the non-linear or density-dependent couplings. In MDC-RMF models, the pairing correlations are treated with the BCS method. With MDC-RMF models, the potential energy surfaces of even-even actinide nuclei were investigated and the effect of triaxiality on the fission barriers in these nuclei was discussed. The non-axial reflection-asymmetric $beta_{32}$ shape in some transfermium nuclei with $N=150$, namely $^{246}$Cm, $^{248}$Cf, $^{250}$Fm, and $^{252}$No were also studied." @default.
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- W1969115871 date "2014-04-29" @default.
- W1969115871 modified "2023-10-16" @default.
- W1969115871 title "Multidimensionally constrained relativistic mean field model and applications in actinide and transfermium nuclei" @default.
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- W1969115871 doi "https://doi.org/10.1088/0031-8949/89/5/054028" @default.
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