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- W2793592145 abstract "Abstract Using the extended fragmentation theory, the compactness of hot and cold fusion reactions is analyzed for odd-Z nuclei ranging Z = 105 – 117 . The calculations for the present work are carried out at T = 0 MeV and l = 0 ħ , as the temperature and angular momentum effects remain silent while addressing the orientation degree of freedom (i.e. compact angle configuration). In the hot fusion, 48Ca (spherical) + actinide (prolate) reaction, the non-equatorial compact (nec) shape is obtained for Z = 113 nucleus. On the other hand, Z > 113 nuclei favor equatorial compact (ec) configuration. The distribution of barrier height ( V B ) illustrate that the ec-shape is obtained when the magnitude of quadrupole deformation of the nucleus is higher than the hexadecupole deformation. In other words, negligible or small −ve β 4 -deformations support ec configurations. On the other hand, large (+ve) magnitude of the β 4 -deformation suggests that the configuration appears for compact angle θ c 90 ° , leading to nec structure. Similar deformation effects are observed for Bi-induced reactions, in which not belly-to-belly compact (nbbc) configurations are seen at θ c = 42 ° . In addition to the effect of β 2 and β 4 -deformations, the exclusive role of octupole deformations ( β 3 ) is also analyzed. The β 3 -deformations do not follow the reflection symmetry as that of β 2 and β 4 , leading to the possible occurrence of compact configuration within 0° to 180° angular range." @default.
- W2793592145 created "2018-03-29" @default.
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- W2793592145 date "2018-03-01" @default.
- W2793592145 modified "2023-10-02" @default.
- W2793592145 title "Effect of deformations on the compactness of odd-Z superheavy nuclei formed in cold and hot fusion reactions" @default.
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- W2793592145 doi "https://doi.org/10.1016/j.nuclphysa.2018.01.017" @default.
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