Pair densities and associated correlation functions provide a critical tool for introducing many-body correlations into a wide-range of effective theories. Ab initio calculations show that two-nucleon pairdensities exhibit strong spin and isospin dependence. However, such calculations are not available for all nuclei of current interest. We therefore provide a simple model, which involves combining the short and long separation distance behavior using a single blending function, to accurately describe the two nucleon correlations inherent in existing ab initio calculations. We show that the salient features of the correlation function arise from the features of the two-body short-range nuclear interaction, and that the suppression of the pp...
Nuclear short-range correlations (SRC) typically manifest themselves in the tail parts of the single...
Sophisticated high-energy and large momentum-transfer scattering experiments combined with ab-initio...
Recent experiments and many-body calculations indicate that approximately 20% of the nucleons in med...
Pair densities and associated correlation functions provide a critical tool for introducing many-bod...
Pair densities and associated correlation functions provide a critical tool for introducing many-bod...
We sketch an approximate method to quantify the number of correlated pairs in any nucleus A. It is b...
Atomic nuclei are complex strongly interacting systems and their exact theoretical description is a ...
Background: Realistic nucleon-nucleon interactions induce short-range correlations in nuclei. To sol...
Background: Short-range correlations (SRC) are an important ingredient of the dynamics of nuclei. P...
Abstract. We sketch an approximate method to quantify the number of correlated pairs in any nucleus ...
We provide a systematic study of the isospin composition and neutron-to-proton (N/Z) ratio dependenc...
We study the extension of our translationally invariant treatment of few-body nuclear systems to hea...
An ab-initio description of atomic nuclei that solves the nuclear many-body prob-lem for realistic n...
We optimize the density dependence of a local energy density functional for pairing correlations (pa...
Current and future electron and neutrino scattering experiments will be greatly aided by a better un...
Nuclear short-range correlations (SRC) typically manifest themselves in the tail parts of the single...
Sophisticated high-energy and large momentum-transfer scattering experiments combined with ab-initio...
Recent experiments and many-body calculations indicate that approximately 20% of the nucleons in med...
Pair densities and associated correlation functions provide a critical tool for introducing many-bod...
Pair densities and associated correlation functions provide a critical tool for introducing many-bod...
We sketch an approximate method to quantify the number of correlated pairs in any nucleus A. It is b...
Atomic nuclei are complex strongly interacting systems and their exact theoretical description is a ...
Background: Realistic nucleon-nucleon interactions induce short-range correlations in nuclei. To sol...
Background: Short-range correlations (SRC) are an important ingredient of the dynamics of nuclei. P...
Abstract. We sketch an approximate method to quantify the number of correlated pairs in any nucleus ...
We provide a systematic study of the isospin composition and neutron-to-proton (N/Z) ratio dependenc...
We study the extension of our translationally invariant treatment of few-body nuclear systems to hea...
An ab-initio description of atomic nuclei that solves the nuclear many-body prob-lem for realistic n...
We optimize the density dependence of a local energy density functional for pairing correlations (pa...
Current and future electron and neutrino scattering experiments will be greatly aided by a better un...
Nuclear short-range correlations (SRC) typically manifest themselves in the tail parts of the single...
Sophisticated high-energy and large momentum-transfer scattering experiments combined with ab-initio...
Recent experiments and many-body calculations indicate that approximately 20% of the nucleons in med...