Semiempirical Shell Model Masses with Magic Number Z = 126 for Superheavy Elements
arXiv:nucl-th/0006045 · doi:10.1103/PhysRevC.62.047301
Abstract
A semiempirical shell model mass equation applicable to superheavy elements up to Z = 126 is presented and shown to have a high predictive power. The equation is applied to the recently discovered superheavy nuclei Z = 118, A = 293 and Z = 114, A = 289 and their decay products.
7 pages, including 2 figures and 2 tables
References in corpus (3)
Cited by in corpus (15)
- Two-Step Model of Fusion for Synthesis of Superheavy Elements
- Search for the Production of Element 112 in the 48Ca + 238U Reaction
- Decay modes of 250No
- Relativistic mean field study of the properties of Z=117 nucleus and the decay chains of 117 isotopes
- Evidence for a long-lived superheavy nucleus with atomic mass number A=292 and atomic number Z=~122 in natural Th
- Existence of long-lived isotopes of a superheavy element in natural Au
- decay properties of nucleus Og within two-potential approach
- Applications of semiempirical shell model masses based on proton magic number Z = 126 to superheavy nuclei
- Semiempirical Shell Model Masses with Magic Number Z=126 for Translead Elements with N smaller or equal to 126
- New Outlook on the Possible Existence of Superheavy Elements in Nature
- Enrichment of the Superheavy Element Rg in Natural Au
- decay properties of Og within the two-potential approach
- Coherent Description for Hitherto Unexplained Radioactivities by Super- and Hyperdeformed Isomeric States
- Semiempirical Shell Model Masses with Magic Proton Number Z=126 for Translead Elements
- A Study of Multi hypernuclei within Spherical Relativistic Mean-field Approach