International audienceNuclear structure theory has recently gone through a major renewal with the development of ab initio techniques that can be applied to a large number of atomic nuclei, well beyond the light sector that had been traditionally targeted in the past. Self-consistent Green's function theory is one among these techniques. The present work aims to give an overview of the self-consistent Green's function approach for atomic nuclei, including examples of recent applications and a discussion on the perspectives for extending the method to nuclear reactions, doubly open-shell systems and heavy nuclei
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
The influence of short-range correlations in nuclei was investigated with realistic nuclear force. T...
The newly developed Gorkov-Green’s function approach represents a promising path to the ab initio de...
International audienceNuclear structure theory has recently gone through a major renewal with the de...
Recent results obtained by applying the method of self-consistent Green's functions to nuclei and nu...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
The first nuclear structure application of the newly developed Gorkov self-consistent Green's functi...
We present results from a new ab initio method that uses the self-consistent Gorkov-Green's function...
We present the fundamental techniques and working equations of many-body Green\u2019s function theor...
Many-body Green functions are a very efficient formulation of the many-body problem. We review the a...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
An ab initio calculation scheme for finite nuclei based on self-consistent Green's functions in the ...
Time dependent Green's function methods provide a basic theory for nuclear dynamics and transport-pr...
An ab initio calculation scheme for finite nuclei based on self-consistent Green's functions in the ...
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
The influence of short-range correlations in nuclei was investigated with realistic nuclear force. T...
The newly developed Gorkov-Green’s function approach represents a promising path to the ab initio de...
International audienceNuclear structure theory has recently gone through a major renewal with the de...
Recent results obtained by applying the method of self-consistent Green's functions to nuclei and nu...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
The first nuclear structure application of the newly developed Gorkov self-consistent Green's functi...
We present results from a new ab initio method that uses the self-consistent Gorkov-Green's function...
We present the fundamental techniques and working equations of many-body Green\u2019s function theor...
Many-body Green functions are a very efficient formulation of the many-body problem. We review the a...
We review some applications of self-consistent Green's function theory to studies of one- and two-nu...
An ab initio calculation scheme for finite nuclei based on self-consistent Green's functions in the ...
Time dependent Green's function methods provide a basic theory for nuclear dynamics and transport-pr...
An ab initio calculation scheme for finite nuclei based on self-consistent Green's functions in the ...
We present results for charge form factors, the point-proton, charge, and single-nucleon momentum di...
The influence of short-range correlations in nuclei was investigated with realistic nuclear force. T...
The newly developed Gorkov-Green’s function approach represents a promising path to the ab initio de...