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- W2332112172 abstract "The excitation functions for the production of $^{262}mathrm{Rf},^{261}mathrm{Rf}$, and $^{260}mathrm{Rf}$ isotopes via $4n$-, $5n$-, and $6n$-decay channels from the ${}^{266}{mathrm{Rf}}^{*}$ compound nucleus are studied within the dynamical cluster-decay model by including ${ensuremath{beta}}_{2i}$ deformations and ``hot-optimum'' ${ensuremath{theta}}_{i}$ orientations. For angular momentum effects, both the sticking and nonsticking moments of inertia are considered. For the sticking moment of inertia ${I}_{S}$, the $4n$ and $5n$ emission data are addressed nicely by using the nuclear proximity potential Prox-00, whereas the commonly used Prox-77 is found suitable only for the $4n$-decay channel. On the other hand, in the limit of nonsticking moment of inertia ${I}_{NS}$, both Prox-00 and Prox-77 seem equally suitable to address all the observed neutron-decay channels in the beam energy range ${E}_{mathrm{lab}}=88.2$ to 101.3 MeV. In addition to this, the role of proposed superheavy magic shells with proton magic $Z=114$, 120, 126 and neutron magic $N=184$ is also investigated, by using the ${I}_{NS}$ approach. The relative depth of the minimum in the fragmentation potential, or maximum peaking of the preformation factor, suggests that, among all the three magic $(Z,N)$ pairs, $Z=126$ and $N=184$ is the strongest superheavy magic shell closure required for analyzing the neutron-decay channels of the ${}^{266}{mathrm{Rf}}^{*}$ compound nucleus." @default.
- W2332112172 created "2016-06-24" @default.
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- W2332112172 date "2014-09-15" @default.
- W2332112172 modified "2023-10-16" @default.
- W2332112172 title "Decay and related stability aspects of theRf*104266nucleus formed in theO18+Cm248reaction" @default.
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- W2332112172 doi "https://doi.org/10.1103/physrevc.90.034610" @default.
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