We sketch an approximate method to quantify the number of correlated pairs in any nucleus A. It is based on counting independent-particle model (IPM) nucleon-nucleon pairs in a relative S-state with no radial excitation. We show that IPM pairs with those quantum numbers are most prone to short-range correlations and are at the origin of the high-momentum tail of the nuclear momentum distributions. Our method allows to compute the a2 ratios extracted from inclusive electron scattering. Furthermore, our results reproduce the observed linear correlation between the number of correlated pairs and the magnitude of the EMC effect. We show that the width of the pair center-ofmass distribution in exclusive two-nucleon knockout yields information on...
The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quar...
The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quar...
Sophisticated high-energy and large momentum-transfer scattering experiments combined with ab-initio...
Abstract. We sketch an approximate method to quantify the number of correlated pairs in any nucleus ...
We sketch an approximate method to quantify the number of correlated pairs in any nucleus A. It is b...
The nuclear mass dependence of the number of short-range correlated (SRC) proton-proton (pp) and pro...
Nuclear short-range correlations (SRC) typically manifest themselves in the tail parts of the single...
Background: Short-range correlations (SRC) are an important ingredient of the dynamics of nuclei. P...
ABSTRACT The influence of short-range correlations on the momentum and energy distribution of nucle...
We suggest that the number of correlated nucleon pairs in an arbitrary nucleus can be estimated by c...
The extraction of the relative abundances of short-range correlated (SRC) nucleon pairs from inclusi...
The extraction of the relative abundances of short-range correlated (SRC) nucleon pairs from inclusi...
Atomic nuclei are complex strongly interacting systems and their exact theoretical description is a ...
The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quar...
The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quar...
Sophisticated high-energy and large momentum-transfer scattering experiments combined with ab-initio...
Abstract. We sketch an approximate method to quantify the number of correlated pairs in any nucleus ...
We sketch an approximate method to quantify the number of correlated pairs in any nucleus A. It is b...
The nuclear mass dependence of the number of short-range correlated (SRC) proton-proton (pp) and pro...
Nuclear short-range correlations (SRC) typically manifest themselves in the tail parts of the single...
Background: Short-range correlations (SRC) are an important ingredient of the dynamics of nuclei. P...
ABSTRACT The influence of short-range correlations on the momentum and energy distribution of nucle...
We suggest that the number of correlated nucleon pairs in an arbitrary nucleus can be estimated by c...
The extraction of the relative abundances of short-range correlated (SRC) nucleon pairs from inclusi...
The extraction of the relative abundances of short-range correlated (SRC) nucleon pairs from inclusi...
Atomic nuclei are complex strongly interacting systems and their exact theoretical description is a ...
The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quar...
The atomic nucleus is made of protons and neutrons (nucleons), which are themselves composed of quar...
Sophisticated high-energy and large momentum-transfer scattering experiments combined with ab-initio...