The accuracy of the Faddeev random phase approximation (FRPA) method is tested by evaluating total and ionization energies in the basis-set limit. A set of light atoms up to Ar is considered. Comparisons are made with the results of coupled-cluster singles and doubles (CCSD), with third-order algebraic diagrammatic construction [ADC(3)], and with the experiment. It is seen that even for two-electron systems, He and Be2+, the inclusion of RPA effects leads to satisfactory results, and therefore it does not overcorrelate the ground state. The FRPA becomes progressively better for larger atomic numbers, where it gives ≈5 mH more correlation energy, and it shifts ionization potentials by 2–10 mH with respect to the similar ADC(3) method. The io...
Several random-phase approximation (RPA) correlation methods were compared in third order of perturb...
It has been suspected since the early days of the random-phase approximation (RPA) that corrections ...
The consistency condition is tested within the particle-particle random-phase approximation (RPA), r...
The accuracy of the Faddeev random phase approximation (FRPA) method is tested by evaluating total a...
The Faddeev random phase approximation (FRPA) method is applied to calculate the ground state and io...
The Faddeev Random Phase Approximation (FRPA) is a Green’s function method which couples collective ...
This Ph.D. thesis derives the equations of the Faddeev Random Phase Approximation (FRPA) and applies...
The many body Green's function is an adequate tool to study the groundstate energy and ionization en...
The Faddeev random-phase approximation is a Green's function technique that makes use of Faddeev equ...
In the past decade, the random phase approximation (RPA) has emerged as a promising post-Kohn-Sham m...
Approximation methods are unavoidable in solving a many-electron problem. One of the most successful...
The spectral function of the closed-shell neon atom is computed by expanding the electron self-energ...
The random phase approximation (RPA) is an increasingly popular post-Kohn-Sham correlation method, b...
The self-consistent random phase approximation (RPA) based on a correlated realistic nucleon-nucleon...
A graphical procedure is presented for evaluating each term in the equation satisfied by the first-o...
Several random-phase approximation (RPA) correlation methods were compared in third order of perturb...
It has been suspected since the early days of the random-phase approximation (RPA) that corrections ...
The consistency condition is tested within the particle-particle random-phase approximation (RPA), r...
The accuracy of the Faddeev random phase approximation (FRPA) method is tested by evaluating total a...
The Faddeev random phase approximation (FRPA) method is applied to calculate the ground state and io...
The Faddeev Random Phase Approximation (FRPA) is a Green’s function method which couples collective ...
This Ph.D. thesis derives the equations of the Faddeev Random Phase Approximation (FRPA) and applies...
The many body Green's function is an adequate tool to study the groundstate energy and ionization en...
The Faddeev random-phase approximation is a Green's function technique that makes use of Faddeev equ...
In the past decade, the random phase approximation (RPA) has emerged as a promising post-Kohn-Sham m...
Approximation methods are unavoidable in solving a many-electron problem. One of the most successful...
The spectral function of the closed-shell neon atom is computed by expanding the electron self-energ...
The random phase approximation (RPA) is an increasingly popular post-Kohn-Sham correlation method, b...
The self-consistent random phase approximation (RPA) based on a correlated realistic nucleon-nucleon...
A graphical procedure is presented for evaluating each term in the equation satisfied by the first-o...
Several random-phase approximation (RPA) correlation methods were compared in third order of perturb...
It has been suspected since the early days of the random-phase approximation (RPA) that corrections ...
The consistency condition is tested within the particle-particle random-phase approximation (RPA), r...