arXiv:nucl-th/9607057·v1·Nuclear Theory
Behavior of the giant-dipole resonance in Sn and Pb at high excitation energ
W.E. Ormand🇮🇹 · P.F. Bortignon🇮🇹 · R.A. Broglia🇮🇹 · A. Bracco🇮🇹
Abstract
The properties of the giant-dipole resonance (GDR) are calculated as a function of excitation energy, angular momentum, and the compound nucleus particle decay width in the nuclei Sn and Pb, and are compared with recent experimental data. Differences observed in the behavior of the full-width-at-half-maximum of the GDR for Sn and Pb are attributed to the fact that shell corrections in Pb are stronger than in Sn, and favor the spherical shape at low temperatures. The effects shell corrections have on both the free energy and the moments of inertia are discussed in detail. At high temperature, the FWHM in Sn exhibits effects due to the evaporation width of the compound nucleus, while these effects are predicted for Pb.
Comments: 28 pages in RevTeX plus eight postscript figures. Submitted to Nucl. Phys. A