PaperPanorama

arXiv:nucl-th/0310032·v2·Nuclear Theory

Alpha-decay chains of and in the Relativistic Mean Field theory

L.S. Geng🇯🇵 · H. Toki🇯🇵 · J. Meng🇨🇳

Abstract

In the recent experiments designed to synthesize the element 115 in the Am+Ca reaction at Dubna in Russia, three similar decay chains consisting of five consecutive -decays, and another different decay chain of four consecutive -decays are detected, and the decay properties of these synthesized nuclei are claimed to be consistent with consecutive -decays originating from the parent isotopes of the new element 115, and , respectively\cite{ogan.03}. Here in the present work, the recently developed deformed RMF+BCS method with a density-independent delta-function interaction in the pairing channel is applied to the analysis of these newly synthesized superheavy nuclei , , and their -decay daughter nuclei. The calculated -decay energies and half-lives agree well with the experimental values and with those of the macroscopic-microscopic FRDM+FY and YPE+WS models. In the mean field Lagrangian, the TMA parameter set is used. Particular emphasis is paid on the influence to both the ground-state properties and energy surfaces introduced by different treatments of pairing. Two different effective interactions in the particle-particle channel, i.e., the constant pairing and the density-independent delta-function interaction, together with the blocking effect are discussed in detail.

Comments: 17 pages, 5 figures

Citation historyopen in Citation History ↗