We have developed equations for obtaining asymptotic wave functions and used them to construct simple, model wave functions for Be, alkaline earths, and their isoelectronics. The general approach is also useful for getting perturbed wave functions. It allows us to obtain reliable expressions for many properties of these systems, such as diamagnetic susceptibilities, polarizabilities, van der Waals constants, hyperpolarizabilities, higher order Zeeman effects, etc
Model wave functions are developed for the excited (1s)(ns) S-1,S-3 and (1s) (np) P-1,P-3 states of ...
International audienceAsymptotics consist in formal series of the solution to a problem which involv...
Using simple wave functions based on the asymptotic behavior and on the binding energies of the vale...
We have developed a simple model potential with a hard core and the correct larger-tau Coulombic beh...
A pseudopotential is introduced to make it possible to express the multipolar perturbed wavefunction...
We have developed simple variational solutions for the first-order wavefunctions for alkali systems ...
ABSTRACT: Using variational Monte Carlo, we compare the features of 118 trial wave function forms fo...
Starting from the GW approximation (GWA) beyond density functional theory and solving the eigenvalue...
Dynamic dipole and quadrupole polarizabilities as well as shielding factors of the beryllium atom in...
We have developed asymptotically correct electron wavefunctions and densities in isolectronic sequen...
We have discussed some general properties of the wave functions of H-2(+) and its isoelectronic ions...
Static dipole and quadrupole polarizability (α<SUB>d</SUB> and α<SUB>q</SUB>, respectively) values o...
Coulomb wave functions are difficult to compute numerically for extremely low energies, even with di...
A simple model potential is proposed to describe the interaction of a valence electron with the alka...
Alkaline-earth dimers are now been used, as new grounds for, testing fundamental physics laws, preci...
Model wave functions are developed for the excited (1s)(ns) S-1,S-3 and (1s) (np) P-1,P-3 states of ...
International audienceAsymptotics consist in formal series of the solution to a problem which involv...
Using simple wave functions based on the asymptotic behavior and on the binding energies of the vale...
We have developed a simple model potential with a hard core and the correct larger-tau Coulombic beh...
A pseudopotential is introduced to make it possible to express the multipolar perturbed wavefunction...
We have developed simple variational solutions for the first-order wavefunctions for alkali systems ...
ABSTRACT: Using variational Monte Carlo, we compare the features of 118 trial wave function forms fo...
Starting from the GW approximation (GWA) beyond density functional theory and solving the eigenvalue...
Dynamic dipole and quadrupole polarizabilities as well as shielding factors of the beryllium atom in...
We have developed asymptotically correct electron wavefunctions and densities in isolectronic sequen...
We have discussed some general properties of the wave functions of H-2(+) and its isoelectronic ions...
Static dipole and quadrupole polarizability (α<SUB>d</SUB> and α<SUB>q</SUB>, respectively) values o...
Coulomb wave functions are difficult to compute numerically for extremely low energies, even with di...
A simple model potential is proposed to describe the interaction of a valence electron with the alka...
Alkaline-earth dimers are now been used, as new grounds for, testing fundamental physics laws, preci...
Model wave functions are developed for the excited (1s)(ns) S-1,S-3 and (1s) (np) P-1,P-3 states of ...
International audienceAsymptotics consist in formal series of the solution to a problem which involv...
Using simple wave functions based on the asymptotic behavior and on the binding energies of the vale...