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arXiv: 1403.1049
handle: 10261/110277 , 10550/39056
Beta-decay properties of neutron-rich Zr and Mo isotopes are investigated within a microscopic theoretical approach based on the proton-neutron quasiparticle random-phase approximation. The underlying mean field is described self-consistently from deformed Skyrme Hartree-Fock calculations with pairing correlations. Residual separable particle-hole and particle-particle forces are also included in the formalism. The structural evolution in these isotopic chains including both even and odd isotopes is analyzed in terms of the equilibrium deformed shapes. Gamow-Teller strength distributions, beta-decay half-lives, and beta-delayed neutron-emission probabilities are studied, stressing their relevance to describe the path of the nucleosynthesis rapid neutron capture process.
14 pages, 17 figures. To be published in Physical Review C. arXiv admin note: substantial text overlap with arXiv:1006.1478
Nuclear Theory (nucl-th), Nuclear Theory, QC Physics / fizika, FOS: Physical sciences, Física nuclear
Nuclear Theory (nucl-th), Nuclear Theory, QC Physics / fizika, FOS: Physical sciences, Física nuclear
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