Feshbach's projection formalism in the particle-hole model space leads to a microscopic description of scattering in terms of the many-body self-energy. To investigate the feasibility of this approach, an optical potential for O16 is constructed starting from two previous calculations of the self-energy for this nucleus. The results reproduce the background phase shifts for positive parity waves and the resonances beyond the mean field. The latter can be computed microscopically for energies of astrophysical interest using Green's function theory
The aim of nuclear astrophysics is to understand the formation of the elements and the role played b...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
We derive ab initio optical potentials from self-consistent Green's function theory and compute the ...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
In this brief report, we make a short review of progress in developing the microscopic optical poten...
Elastic scattering is probably one of the most relevant tools to study nuclear interactions. In thi...
Elastic scattering is probably one of the most relevant tools to study nuclear interactions. In thi...
The self-consistent Green's function method is applied to 16O using a G-matrix and VUCOM as effectiv...
In this brief report, we make a short review of progress in developing the microscopic optical poten...
This chapter presents an overview of the optical model description of nucleon-nucleus scattering and...
Elastic scattering is probably the main event in the interactions of nucleons with nuclei. Even if ...
none3noBackground: Elastic scattering is probably the main event in the interactions of nucleons wit...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
The aim of nuclear astrophysics is to understand the formation of the elements and the role played b...
The aim of nuclear astrophysics is to understand the formation of the elements and the role played b...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
We derive ab initio optical potentials from self-consistent Green's function theory and compute the ...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
In this brief report, we make a short review of progress in developing the microscopic optical poten...
Elastic scattering is probably one of the most relevant tools to study nuclear interactions. In thi...
Elastic scattering is probably one of the most relevant tools to study nuclear interactions. In thi...
The self-consistent Green's function method is applied to 16O using a G-matrix and VUCOM as effectiv...
In this brief report, we make a short review of progress in developing the microscopic optical poten...
This chapter presents an overview of the optical model description of nucleon-nucleus scattering and...
Elastic scattering is probably the main event in the interactions of nucleons with nuclei. Even if ...
none3noBackground: Elastic scattering is probably the main event in the interactions of nucleons wit...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
The aim of nuclear astrophysics is to understand the formation of the elements and the role played b...
The aim of nuclear astrophysics is to understand the formation of the elements and the role played b...
Background: Elastic scattering is probably the main event in the interactions of nucleons with nucle...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...