Artículo de publicación ISIThe effect of in-medium dinucleon bound states on self-consistent single-particle fields in Brueckner, Bethe and Goldstone theory is investigated in symmetric nuclear matter at zero temperature. To this end, dinucleon bound state occurences in the 1 S0 and 3 SD1 channels are explicitly accounted for -within the continuous choice for the auxiliary fields-while imposing self-consistency in Brueckner-Hartree-Fock approximation calculations. Searches are carried out at Fermi momenta in the range 0 < kF = 1.75 fm-1, using the Argonne v18 bare nucleon-nucleon potential without resorting to the effective-mass approximation. As a result, two distinct solutions meeting the self-consistency requirement are found with overla...
We investigate the appearance of di-neutron bound states in pure neutron matter within the Brueckner...
Symmetrical nuclear matter at finite temperature is studied in the framework of the Brueckner-Hartre...
Properties of the 1S0 superfluid phase are studied for symmetric nuclear matter at finite temperatur...
Artículo de publicación ISIThe effect of in-medium dinucleon bound states on self-consistent single-...
We investigate homogeneous nuclear matter within the Brueckner-Hartree-Fock (BHF) approach in the li...
The microscopic and bulk properties of nuclear matter at zero and finite temperatures are studied in...
We determine pairing gap and binding energy of symmetric nuclear matter in a combined, self-consiste...
We study the equation of state of symmetric nuclear matter at zero temperature over a wide range of ...
In this study, symmetric and asymmetric nuclear matter, as well as pure neutron matter in the low-de...
Within the framework of the relativistic Dirac-Brueckner approach properties of both dense and hot s...
We present calculations of the energy per particle of pure neutron and symmetric nuclear matter with...
In this communication we study symmetric nuclear matter for the Brueckner-Hartree-Fock approach, usi...
We study the energy per particle of symmetric nuclear matter and pure neutron matter using realistic...
We investigate the appearance of di–neutron bound states in pure neutron matter within the Brueckner...
The purpose of this study is to investigate collective density instabilities that arise in Fermionic...
We investigate the appearance of di-neutron bound states in pure neutron matter within the Brueckner...
Symmetrical nuclear matter at finite temperature is studied in the framework of the Brueckner-Hartre...
Properties of the 1S0 superfluid phase are studied for symmetric nuclear matter at finite temperatur...
Artículo de publicación ISIThe effect of in-medium dinucleon bound states on self-consistent single-...
We investigate homogeneous nuclear matter within the Brueckner-Hartree-Fock (BHF) approach in the li...
The microscopic and bulk properties of nuclear matter at zero and finite temperatures are studied in...
We determine pairing gap and binding energy of symmetric nuclear matter in a combined, self-consiste...
We study the equation of state of symmetric nuclear matter at zero temperature over a wide range of ...
In this study, symmetric and asymmetric nuclear matter, as well as pure neutron matter in the low-de...
Within the framework of the relativistic Dirac-Brueckner approach properties of both dense and hot s...
We present calculations of the energy per particle of pure neutron and symmetric nuclear matter with...
In this communication we study symmetric nuclear matter for the Brueckner-Hartree-Fock approach, usi...
We study the energy per particle of symmetric nuclear matter and pure neutron matter using realistic...
We investigate the appearance of di–neutron bound states in pure neutron matter within the Brueckner...
The purpose of this study is to investigate collective density instabilities that arise in Fermionic...
We investigate the appearance of di-neutron bound states in pure neutron matter within the Brueckner...
Symmetrical nuclear matter at finite temperature is studied in the framework of the Brueckner-Hartre...
Properties of the 1S0 superfluid phase are studied for symmetric nuclear matter at finite temperatur...