consider a simple but nontrivial many-body system interacting through short-range forces, and confirm a property of such systems that was recently proposed on general grounds, namely, that single-particle overlap functions, spectroscopic factors, and separation energies of the bound (A-1)-particle eigenstates can be derived from the one-body density matrix of the A-particle system in its ground state. The basis of natural orbitals for the system is constructed and its properties are discussed. We also investigate the high-momentum content of the bound-state overlap functions and momentum distribution. It is found that the mean field provides a good approximation for the bound-state overlap functions even in the region of large momenta, wher...
14 pages, 9 figuresDifferent steps leading to the new functional for pairing based on natural orbita...
The exact study of small systems can guide us toward relevant measures for extracting information ab...
The non-vanishing of the natural orbital (NO) occupation numbers of the one-particle density matrix ...
consider a simple but nontrivial many-body system interacting through short-range forces, and confir...
A recent theorem states that for quantum many-body systems with short-range interactions the followi...
Relationships are obtained connecting the two-nucleon overlap function of the eigenstates in the (A-...
A method to calculate the hole spectral function in the discrete part of the spectrum is suggested w...
6 pages, 6 EPS figures, minor modifications and references addedWe study a system in which the quant...
We investigate the suitability of natural orbitals as a basis for describing many-body excitations. ...
A theory of strongly interacting Fermi systems of a few particles is developed. At high excitation e...
In singlet two-electron systems, the natural occupation numbers of the one-particle reduced density ...
The subject of this thesis lies in the field of many-body theory. This field emerged from the aim to...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...
The bound and scattering states of the many-body systems, related to the short-range Dyson model, ar...
The effects of short-range correlations derived from a realistic meson-exchange potential on the sin...
14 pages, 9 figuresDifferent steps leading to the new functional for pairing based on natural orbita...
The exact study of small systems can guide us toward relevant measures for extracting information ab...
The non-vanishing of the natural orbital (NO) occupation numbers of the one-particle density matrix ...
consider a simple but nontrivial many-body system interacting through short-range forces, and confir...
A recent theorem states that for quantum many-body systems with short-range interactions the followi...
Relationships are obtained connecting the two-nucleon overlap function of the eigenstates in the (A-...
A method to calculate the hole spectral function in the discrete part of the spectrum is suggested w...
6 pages, 6 EPS figures, minor modifications and references addedWe study a system in which the quant...
We investigate the suitability of natural orbitals as a basis for describing many-body excitations. ...
A theory of strongly interacting Fermi systems of a few particles is developed. At high excitation e...
In singlet two-electron systems, the natural occupation numbers of the one-particle reduced density ...
The subject of this thesis lies in the field of many-body theory. This field emerged from the aim to...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...
The bound and scattering states of the many-body systems, related to the short-range Dyson model, ar...
The effects of short-range correlations derived from a realistic meson-exchange potential on the sin...
14 pages, 9 figuresDifferent steps leading to the new functional for pairing based on natural orbita...
The exact study of small systems can guide us toward relevant measures for extracting information ab...
The non-vanishing of the natural orbital (NO) occupation numbers of the one-particle density matrix ...