-decay properties of from double-folding potentials
arXiv:1612.09056 · doi:10.1103/PhysRevC.95.011302
Abstract
-decay properties of the yet unknown nucleus 118 are predicted using the systematic behavior of parameters of -nucleus double-folding potentials. The results are MeV and ms with an uncertainty of about a factor of 4.
4 pages, 4 figures, Phys. Rev. C, accepted as Rapid Communication
References in corpus (4)
- Surface diffuseness correction in global mass formula
- Half-lives of decay from natural nuclides and from superheavy elements
- Feasibility of observing the α decay chains from isotopes of SHN with Z = 128, Z = 126, Z = 124 and Z = 122
- Signature of the N=126 shell closure in dwell times of alpha-particle tunneling
Cited by in corpus (6)
- -cluster states in Cr from double-folding potentials
- Influence of the Pauli exclusion principle on the alpha decay
- Manifestation of deformation and nonlocality in and cluster decay
- Theoretical study on favored alpha-decay half-lives of deformed nuclei
- Nuclear energy density functional and the nuclear alpha decay
- Structural and decay properties of nuclei appearing in the -decay chains of 120 within the relativistic mean-field formalism