We derive expressions for core+N+N overlap integrals starting from microscopic wave functions obtained in the ab initio no-core shell model. These overlap integrals correspond to three-body channel form factors and can be used to investigate the clustering of many-body systems into a core plus two nucleons. We consider the case when the composite system and the core are described in Slater determinant, harmonic oscillator bases, and we show how to remove spurious center-of-mass components exactly in order to derive translationally invariant overlap integrals. We study in particular the Borromean 6He nucleus using realistic chiral nuclear interactions, and we demonstrate that the observed clusterization in this system is a Pauli focusing eff...
Background: The coexistence of different geometric shapes at low energies presents a universal struc...
d fo e 2 W. H Nuclear structure of Be, B and Li is studied within the ab initio no-core shell model ...
We aim for fully microscopic understanding of many-body nuclear reactions starting from two- and thr...
We derive expressions for core+N+N overlap integrals starting from microscopic wave functions obtain...
In this thesis we present the ab initio no-core shell model (NCSM) and use this framework to study l...
In this thesis we present the ab initio no-core shell model (NCSM) and we use that framework to stud...
We derive expressions for cluster overlap integrals or channel cluster form factors for ab initio no...
International audienceWe realize the treatment of bound and continuum nuclear systems in the proximi...
International audienceThe Borromean He6 nucleus is an exotic system characterized by two halo neutro...
Using a three-body model, we study the dependence of spectroscopic factors for the overlap integrals...
We expose the relation between the properties of the three-body continuum states and their two-body ...
Nuclei feature a rich variety of many-body phenomena. Especially the clustering of nucleons, which l...
In this work a unitary correlation operator is presented that explicitly describes the short-ranged ...
Nuclear Hamiltonians constructed within chiral effective field theory provide an unprecedented oppor...
Overlap functions for one-nucleon removal are calculated as solutions of the inhomogeneous equation....
Background: The coexistence of different geometric shapes at low energies presents a universal struc...
d fo e 2 W. H Nuclear structure of Be, B and Li is studied within the ab initio no-core shell model ...
We aim for fully microscopic understanding of many-body nuclear reactions starting from two- and thr...
We derive expressions for core+N+N overlap integrals starting from microscopic wave functions obtain...
In this thesis we present the ab initio no-core shell model (NCSM) and use this framework to study l...
In this thesis we present the ab initio no-core shell model (NCSM) and we use that framework to stud...
We derive expressions for cluster overlap integrals or channel cluster form factors for ab initio no...
International audienceWe realize the treatment of bound and continuum nuclear systems in the proximi...
International audienceThe Borromean He6 nucleus is an exotic system characterized by two halo neutro...
Using a three-body model, we study the dependence of spectroscopic factors for the overlap integrals...
We expose the relation between the properties of the three-body continuum states and their two-body ...
Nuclei feature a rich variety of many-body phenomena. Especially the clustering of nucleons, which l...
In this work a unitary correlation operator is presented that explicitly describes the short-ranged ...
Nuclear Hamiltonians constructed within chiral effective field theory provide an unprecedented oppor...
Overlap functions for one-nucleon removal are calculated as solutions of the inhomogeneous equation....
Background: The coexistence of different geometric shapes at low energies presents a universal struc...
d fo e 2 W. H Nuclear structure of Be, B and Li is studied within the ab initio no-core shell model ...
We aim for fully microscopic understanding of many-body nuclear reactions starting from two- and thr...