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Self-consistent Green's function theory for atomic nuclei

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arxiv 2003.11321 v2 pith:R7KOD7OV submitted 2020-03-25 nucl-th nucl-exphysics.chem-ph

classification nucl-thnucl-exphysics.chem-ph
keywords nucleiatomicfunctiongreenself-consistenttheorynucleartechniques
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Nuclear 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.

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  1. From bare two-nucleon interaction to nuclear matter and finite nuclei in a relativistic framework

    nucl-th 2025-07 conditional novelty 6.0 of 10

    A leading-order relativistic chiral two-nucleon force, with four constants fit to scattering data, describes nuclear matter saturation and medium-mass nuclei binding energies and radii without three-nucleon forces.

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