English

Thermodynamic Properties of $^{56,57}$Fe

Nuclear Experiment 2008-12-18 v1

Abstract

Nuclear level densities for 56,57^{56,57}Fe have been extracted from the primary γ\gamma-ray spectra using (3^3He,3^3Heγ^{\prime}\gamma) and (3^3He,αγ\alpha \gamma) reactions. Nuclear thermodynamic properties for 56^{56}Fe and 57^{57}Fe are investigated using the experimental level densities. These properties include entropy, Helmholtz free energy, caloric curves, chemical potential, and heat capacity. In particular, the breaking of Cooper pairs and single-quasiparticle entropy are discussed and shown to be important concepts for describing nuclear level density. Microscopic model calculations are performed for level densities of 56,57^{56,57}Fe. The experimental and calculated level densities are compared. The average number of broken Cooper pairs and the parity distribution are extracted as a function of excitation energy for 56,57^{56,57}Fe from the model calculations.

Keywords

Cite

@article{arxiv.0808.3342,
  title  = {Thermodynamic Properties of $^{56,57}$Fe},
  author = {E. Algin and U. Agvaanluvsan and M. Guttormsen and A. C. Larsen and G. E. Mitchell and J. Rekstad and A. Schiller and S. Siem and A. Voinov},
  journal= {arXiv preprint arXiv:0808.3342},
  year   = {2008}
}

Comments

24 pages, 11 figures