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Nuclear Properties for Astrophysical Applications

1996/01/27 by P. Moller, P. Möller, J.R. Nix +6
Physics and Astronomy · #FOS: Physical sciences #Nuclear Theory (nucl-th) #Nuclear physics research studies #nucl-th

paper · pdf · doi:10.48550/arxiv.nucl-th/9601043

42 pages. LaTeX. Submitted to Atomic Data and Nuclear Data Tables. 99 figures and 160-page table not included here. Complete preprint, including device-independent (dvi), PostScript, and LaTeX versions of the text and table, plus PostScript files of the figures, available at http://t2.lanl.gov/pub/publications/publications.html or at ftp://t2.lanl.gov/pub/publications/astro

arxiv created 1996/01/27 · openalex publication_date 1996/01/27 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

We tabulate the ground-state odd-proton and odd-neutron spins and parities, proton and neutron pairing gaps, binding energy, one- and two-neutron separation energies, quantities related to beta-delayed one- and two-neutron emission probabilities, beta-decay energy release and half-life with respect to Gamow-Teller decay, one- and two-proton separation energies, and alpha-decay energy release and half-life for 8979 nuclei ranging from oxygen-16 to Z = 136, A = 339 and extending from the proton drip line to the neutron drip line. Single-particle level diagrams and other quantities are also presented in graphical form. The starting point of our present work is a study of nuclear ground-state masses and deformations based on the finite-range droplet model and folded-Yukawa single-particle potential published in a previous issue of Atomic Data and Nuclear Data Tables. The beta-delayed neutron-emission probabilities and Gamow-Teller beta-decay rates are obtained from a quasi-particle random-phase approximation with single-particle levels and wave functions at the calculated nuclear ground-state shapes as input quantities.

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