The paper reviews the history of B-spline methods for atomic structure calculations for bound states. It highlights various aspects of the variational method, particularly with regard to the orthogonality requirements, the iterative self-consistent method, the eigenvalue problem, and the related sphf, dbsr-hf, and spmchf programs. B-splines facilitate the mapping of solutions from one grid to another. The following paper describes a two-stage approach where the goal of the first stage is to determine parameters of the problem, such as the range and approximate values of the orbitals, after which the level of accuracy is raised. Once convergence has been achieved the Virial Theorem, which is evaluated as a check for accuracy. For exact solut...
A new method for solving the bound-state configuration-space Faddeev equations is presented. This me...
Recent ab initio variational calculations of radiative transition probabilities, isotope shifts and ...
An accurate finite element method is developed for atomic calculations based on density functional t...
The paper reviews the history of B-spline methods for atomic structure calculations for bound states...
BSHF solves the Hartree–Fock equations in a B-spline basis for atoms, negatively charged ions, and s...
This article is devoted to a two-spinor characterization of energy levels of Dirac operators based a...
B-spline methods are now well established as widely applicable tools for the evaluation of atomic an...
Abstract: Relatively simple quantum mechanical calculations are described for atoms and ions up to b...
B-Splines as piecewise adaptation of Bernstein polynomials (aka, B-polys) are widely used as Ritz va...
An efficient method for the low-dimensional semiconductor structure is investigated. The method is a...
Effective completeness of B-splines, defined as the capability of approaching completeness without c...
The use of B-spline basis sets is explored in the context of a vibrational program for automatic pot...
The use of B-spline basis sets is explored in the context of a vibrational program for automatic pot...
We are interested in complex electronic structures of various atomic and ionics systems. We use an a...
This thesis presents the results of an exercise in practical numerical analysis whose aim is the est...
A new method for solving the bound-state configuration-space Faddeev equations is presented. This me...
Recent ab initio variational calculations of radiative transition probabilities, isotope shifts and ...
An accurate finite element method is developed for atomic calculations based on density functional t...
The paper reviews the history of B-spline methods for atomic structure calculations for bound states...
BSHF solves the Hartree–Fock equations in a B-spline basis for atoms, negatively charged ions, and s...
This article is devoted to a two-spinor characterization of energy levels of Dirac operators based a...
B-spline methods are now well established as widely applicable tools for the evaluation of atomic an...
Abstract: Relatively simple quantum mechanical calculations are described for atoms and ions up to b...
B-Splines as piecewise adaptation of Bernstein polynomials (aka, B-polys) are widely used as Ritz va...
An efficient method for the low-dimensional semiconductor structure is investigated. The method is a...
Effective completeness of B-splines, defined as the capability of approaching completeness without c...
The use of B-spline basis sets is explored in the context of a vibrational program for automatic pot...
The use of B-spline basis sets is explored in the context of a vibrational program for automatic pot...
We are interested in complex electronic structures of various atomic and ionics systems. We use an a...
This thesis presents the results of an exercise in practical numerical analysis whose aim is the est...
A new method for solving the bound-state configuration-space Faddeev equations is presented. This me...
Recent ab initio variational calculations of radiative transition probabilities, isotope shifts and ...
An accurate finite element method is developed for atomic calculations based on density functional t...