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arXiv:2003.00967·v1·Nuclear Theory

Microscopic description of the self-conjugate Xe and Te -decay chain

F. Mercier🇫🇷 · J. Zhao🇨🇳 · R.-D Lasseri🇫🇷 · J.-P. Ebran🇫🇷 · E. Khan🇫🇷 · T. Niksic🇭🇷 · D. Vretenar🇭🇷

Abstract

A microscopic calculation of half-lives for the recently observed Xe Te Sn -decay chain is performed using a self-consistent framework based on energy density functionals. The relativistic density functional DD-PC1 and a separable pairing interaction of finite range are used to compute axially-symmetric deformation energy surfaces of Te and Xe as functions of quadrupole, octupole and hexadecupole collective coordinates. Dynamic least-action paths are determined that trace the -particle emission from the equilibrium deformation to the point of scission. The calculated half-lives: 197 ns for Te and 50 s for Xe, are compared to recent experimental values of the half-lives of superallowed -decay of Te: ns, and Xe: 58 s.

Comments: 4 pages, 4 figures

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