We consider the nucleon self-energy in nuclear matter in the absence of Pauli blocking. It is evaluated using the partial-wave analysis of N N scattering data. Our results are compared with that of a realistic calculation to estimate the effect of this blocking. It is also possible to use our results as a check on the realistic calculations
The s- and p-wave contributions to the $\bar K N$ interaction in dense nuclear matter are obtained u...
We study medium modifications of the nucleon-nucleon (NN) cross sections and their influence on the ...
We study the impact of the description of the knockout nucleon wave function on electron- and neutri...
Within the relativistic Dirac-Brueckner approach and starting from a one-boson-exchange interaction,...
We argue that, in contrast to the non-relativistic approach, a relativistic evaluation of the nucleo...
We argue that, in contrast to the non-relativistic approach, a relativistic evaluation of the nucleo...
We have evaluated the nucleon self-energy in a model that has proper analytical properties, satisfie...
The properties of the antikaons in nuclear matter are investigated from a chiral unitary approach wh...
We investigate the momentum dependence of the self-energy in nuclear matter. We apply the relativist...
In this article we present a classical potential that respects the Pauli exclusion principle and can...
In this communication we study symmetric nuclear matter for the Brueckner-Hartree-Fock approach, usi...
We have investigated[1] the possibility to describe infinite and symmetric nuclear matter in an appr...
Nucleon-nucleon scattering is a most fundamental process in nuclear physics. From the theoretical st...
We analyze the observability of quark phenomena in nuclei by studying the effects of the antisymmetr...
We investigate the momentum dependence of the nucleon self-energy in nuclear matter. We apply the re...
The s- and p-wave contributions to the $\bar K N$ interaction in dense nuclear matter are obtained u...
We study medium modifications of the nucleon-nucleon (NN) cross sections and their influence on the ...
We study the impact of the description of the knockout nucleon wave function on electron- and neutri...
Within the relativistic Dirac-Brueckner approach and starting from a one-boson-exchange interaction,...
We argue that, in contrast to the non-relativistic approach, a relativistic evaluation of the nucleo...
We argue that, in contrast to the non-relativistic approach, a relativistic evaluation of the nucleo...
We have evaluated the nucleon self-energy in a model that has proper analytical properties, satisfie...
The properties of the antikaons in nuclear matter are investigated from a chiral unitary approach wh...
We investigate the momentum dependence of the self-energy in nuclear matter. We apply the relativist...
In this article we present a classical potential that respects the Pauli exclusion principle and can...
In this communication we study symmetric nuclear matter for the Brueckner-Hartree-Fock approach, usi...
We have investigated[1] the possibility to describe infinite and symmetric nuclear matter in an appr...
Nucleon-nucleon scattering is a most fundamental process in nuclear physics. From the theoretical st...
We analyze the observability of quark phenomena in nuclei by studying the effects of the antisymmetr...
We investigate the momentum dependence of the nucleon self-energy in nuclear matter. We apply the re...
The s- and p-wave contributions to the $\bar K N$ interaction in dense nuclear matter are obtained u...
We study medium modifications of the nucleon-nucleon (NN) cross sections and their influence on the ...
We study the impact of the description of the knockout nucleon wave function on electron- and neutri...