Investigation of the energy-averaged double transition density of isoscalar monopole excitations in medium-heavy mass spherical nuclei
arXiv:1512.05473 · doi:10.1016/j.nuclphysa.2016.06.004
Abstract
The particle-hole dispersive optical model, developed recently, is applied to describe properties of high-energy isoscalar monopole excitations in medium-heavy mass spherical nuclei. We consider, in particular, the double transition density averaged over the energy of the isoscalar monopole excitations in Pb in a wide energy interval, which includes the isoscalar giant monopole resonance and its overtone. The energy-averaged strength functions of these resonances are also analyzed. Possibilities for using the mentioned transition density to description of inelastic -scattering are discussed.
22 pages, 11 figures
References in corpus (1)
Cited by in corpus (4)
- Properties of Isoscalar Giant Multipole Resonances in medium-heavy closed-shell nuclei: a semimicroscopic description
- On the spreading width of the Isobaric Analog Resonances
- On unitarity of the particle-hole dispersive optical model
- A semimicroscopic description of Isoscalar Giant Multiple Resonances in medium-mass closed-shell nuclei