English

Level density and $\gamma$-ray strength in $^{27,28}$Si

Nuclear Experiment 2008-11-26 v3

Abstract

A method to extract simultaneously level densities and γ\gamma-ray transmission coefficients has for the first time been tested on light nuclei utilizing the 28^{28}Si(3^3He,αγ)27\alpha\gamma)^{27}Si and 28^{28}Si(3^3He,3^3He'γ)28\gamma)^{28}Si reactions. The extracted level densities for 27^{27}Si and 28^{28}Si are consistent with the level densities obtained by counting known levels in the respective nuclei. The extracted γ\gamma-ray strength in 28^{28}Si agrees well with the known γ\gamma-decay properties of this nucleus. Typical nuclear temperatures are found to be T2.4T\sim 2.4 MeV at around 7 MeV excitation energy. The entropy gap between nuclei with mass number AA and A±1A\pm 1 is measured to be δS1.0kB\delta S\sim 1.0 k_B, which indicates an energy spacing between single-particle orbitals comparable with typical nuclear temperatures.

Keywords

Cite

@article{arxiv.nucl-ex/0203013,
  title  = {Level density and $\gamma$-ray strength in $^{27,28}$Si},
  author = {M. Guttormsen and E. Melby and J. Rekstad and A. Schiller and S. Siem and T. Loennroth and A. Voinov},
  journal= {arXiv preprint arXiv:nucl-ex/0203013},
  year   = {2008}
}

Comments

Totally 17 pages, 11 figures