arXiv Analytics

Sign in

arXiv:1111.6500 [nucl-th]AbstractReferencesReviewsResources

The α-Decay Chains of the $^{287, 288}115$ Isotopes using Relativistic Mean Field Theory

B. K. Sahu, M. Bhuyan, S. Mahapatro, S. K. Patra

Published 2011-11-28Version 1

We study the binding energy, root-mean-square radius and quadrupole deformation parameter for the synthesized superheavy element Z = 115, within the formalism of relativistic mean field theory. The calculation is dones for various isotopes of Z = 115 element, starting from A = 272 to A = 292. A systematic comparison between the binding energies and experimental data is made.The calculated binding energies are in good agreement with experimental result. The results show the prolate deformation for the ground state of these nuclei. The most stable isotope is found to be 282115 nucleus (N = 167) in the isotopic chain. We have also studied Q{\alpha} and T{\alpha} for the {\alpha}-decay chains of $^{287, 288}$115.

Comments: 12 Pages 6 Figures 3 Tables
Journal: Int. J. Mod. Phys. 20 (2011) 2217
Categories: nucl-th
Related articles: Most relevant | Search more
arXiv:nucl-th/9712039 (Published 1997-12-11)
On the binding energy of double Λhypernuclei in the relativistic mean field theory
arXiv:0903.0769 [nucl-th] (Published 2009-03-04, updated 2009-07-30)
A systematic study on the binding energy of $Λ$ hypernuclei
arXiv:nucl-th/0210017 (Published 2002-10-07)
Estimate of crossed-boson-exchange contributions to the binding energy of two-body systems