The surface behavior of the pairing gap previously studied for semi-infinite nuclear matter is analyzed in the slab geometry. The gap-shape function is calculated in two cases: a) pairing with the Gogny force in a hard-wall potential and b) pairing with the separable Paris interaction in a Saxon-Woods mean-field potential. It is shown that the surface features are preserved in the case of slab geometry, being almost independent of the width of the slab. It is also demonstrated that the surface enhancement is strengthened as the absolute value of chemical potential $\vert\mu\vert$ decreases which simulates the approach to the nucleon drip line.-
Nonempirical effective contact pairing forces to be used in self-consistent mean-field calculations ...
The surface thickness of nuclear densities and single-particle potentials calculated self-consistent...
The purpose of this study is threefold: first, to identify a scheme for the determination of the sur...
Surface properties of neutron-neutron (T=1) pairing in semi-infinite nuclear matter in a hard wall p...
The gap equation in the $^1S_0$-channel is solved for a nuclear slab with the separable form of the ...
12 pages, 5 figures - PTHWe analyse how the spatial localisation properties of pairing correlations ...
Ab initio gap equation for ^1S_0 pairing in a nuclear slab is solved for the Argonne v18 NN-potentia...
Properties of density-dependent contact pairing interactions in nuclei are discussed. It is shown th...
none3siBackground: An accurate description of nuclear pairing gaps is extremely important for unders...
14 pages, 12 figuresWe study 1S0 pairing gaps in neutron and nuclear matter as well as in finite nuc...
The role of superfluidity in incompressibility and in symmetry energy is studied in nuclear matter a...
We investigate the pairing treatment with approximate particle number projection, known as the Lipki...
The pairing gap obtained adding the bare nucleon-nucleon potential and the interaction induced from ...
We analyze how the spatial localization properties of pairing correlations are changing in a major n...
Nuclear pairing is studied both in atomic nuclei and in neutron-star crusts in the unified framework...
Nonempirical effective contact pairing forces to be used in self-consistent mean-field calculations ...
The surface thickness of nuclear densities and single-particle potentials calculated self-consistent...
The purpose of this study is threefold: first, to identify a scheme for the determination of the sur...
Surface properties of neutron-neutron (T=1) pairing in semi-infinite nuclear matter in a hard wall p...
The gap equation in the $^1S_0$-channel is solved for a nuclear slab with the separable form of the ...
12 pages, 5 figures - PTHWe analyse how the spatial localisation properties of pairing correlations ...
Ab initio gap equation for ^1S_0 pairing in a nuclear slab is solved for the Argonne v18 NN-potentia...
Properties of density-dependent contact pairing interactions in nuclei are discussed. It is shown th...
none3siBackground: An accurate description of nuclear pairing gaps is extremely important for unders...
14 pages, 12 figuresWe study 1S0 pairing gaps in neutron and nuclear matter as well as in finite nuc...
The role of superfluidity in incompressibility and in symmetry energy is studied in nuclear matter a...
We investigate the pairing treatment with approximate particle number projection, known as the Lipki...
The pairing gap obtained adding the bare nucleon-nucleon potential and the interaction induced from ...
We analyze how the spatial localization properties of pairing correlations are changing in a major n...
Nuclear pairing is studied both in atomic nuclei and in neutron-star crusts in the unified framework...
Nonempirical effective contact pairing forces to be used in self-consistent mean-field calculations ...
The surface thickness of nuclear densities and single-particle potentials calculated self-consistent...
The purpose of this study is threefold: first, to identify a scheme for the determination of the sur...