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- W2765284504 abstract "The $ensuremath{alpha}$-decay chains of the isotopes $^{265ensuremath{-}279}mathrm{Mt}$ are predicted by comparing the $ensuremath{alpha}$ half-lives calculated within the Coulomb and proximity potential model for deformed nuclei of Santhosh et al. [Nucl. Phys. A 850, 34 (2011)] with the spontaneous fission half-lives using the shell-effect-dependent formula of Santhosh and Nithya [Phys. Rev. C 94, 054621 (2016)]. $ensuremath{alpha}$ half-lives also are calculated using different theoretical formalisms for comparison. The predicted half-lives and decay modes match well with the experimental results. The use of four different mass tables for calculating the $ensuremath{alpha}$- decay energies indicates that the mass table of Wang et al. [Chin. Phys. C 41, 030003 (2017)], which is based on the AME2016 atomic mass evaluation, is in better agreement with experimental results. The paper predicts long $ensuremath{alpha}$ chains from $^{265,267ensuremath{-}269,271ensuremath{-}273}mathrm{Mt}$ with half-lives within experimental limits. The isotopes $^{274ensuremath{-}276,278}mathrm{Mt}$ exhibit 2ensuremath{alpha} chains followed by spontaneous fission. The 2ensuremath{alpha} chain of $^{266}mathrm{Mt}$ and the 4ensuremath{alpha} chain of $^{270}mathrm{Mt}$ end with electron capture. The isotopes $^{277,279}mathrm{Mt}$ decay via spontaneous fission. We hope that the paper will open up new areas in this field." @default.
- W2765284504 created "2017-11-10" @default.
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- W2765284504 date "2017-10-18" @default.
- W2765284504 modified "2023-09-27" @default.
- W2765284504 title "α -decay chains of superheavy Mt265−279 isotopes" @default.
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- W2765284504 doi "https://doi.org/10.1103/physrevc.96.044613" @default.
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