English

Level density of the $sd$-nuclei $-$ statistical shell-model predictions

Nuclear Theory 2017-10-10 v1

Abstract

Accurate knowledge of the nuclear level density is important both from a theoretical viewpoint as a powerful instrument for studying nuclear structure and for numerous applications. For example, astrophysical reactions responsible for the nucleosynthesis in the universe can be understood only if we know the nuclear level density. We use the configuration-interaction nuclear shell model to predict nuclear level density for all nuclei in the sdsd-shell, both total and for individual spins (only with positive parity). To avoid the diagonalization in large model spaces we use the moments method based on statistical properties of nuclear many-body systems. In the cases where the diagonalization is possible, the results of the moments method practically coincide with those from the shell-model calculations. Using the computed level densities, we fit the parameters of the Constant Temperature phenomenological model, which can be used by practitioners in their studies of nuclear reactions at excitation energies appropriate for the sdsd-shell nuclei.

Keywords

Cite

@article{arxiv.1710.02885,
  title  = {Level density of the $sd$-nuclei $-$ statistical shell-model predictions},
  author = {S. Karampagia and R. A. Senkov and V. Zelevinsky},
  journal= {arXiv preprint arXiv:1710.02885},
  year   = {2017}
}

Comments

106 pages, 7 figures, 109 tables

R2 v1 2026-06-22T22:07:03.228Z