B-Splines as piecewise adaptation of Bernstein polynomials (aka, B-polys) are widely used as Ritz variational basis functions in solving many problems in the fields of quantum mechanics and atomic physics. In this paper they are used to solve the 1-D stationary Schrodinger equation (TISE) for a free quantum particle subject to a fixed domain length by using the Python software SPLIPY with different sets of computation parameters. In every case it was found that over 60 percent of energy levels had excellent accuracy thereby proving that the use of B-spline collocation is a preferred method
The Schrödinger equation is one of the most important equations in physics and chemistry and can be ...
[[abstract]]The use of the contracted basis functions is a very powerful and widely used techn...
Author Institution: Molecular Physics, SRI InternationalWe will describe recent developments and app...
The time-dependent and time-independent Schrödinger equations have been numerically solved for sever...
The paper reviews the history of B-spline methods for atomic structure calculations for bound states...
SOLVING THE SCHRODINGER EQUATION USING FUNDAMENTAL NUMERICAL PROCEDURES. A combination of the variat...
BSHF solves the Hartree–Fock equations in a B-spline basis for atoms, negatively charged ions, and s...
A large class of problems in quantum physics involve solution of the time independent Schrödinger eq...
Smolyak or sparse-grid interpolation enables one to accurately represent smooth multi-dimensional f...
We present a computer program which solves the Schrodinger equation of the stationary states for an ...
B-splines of polynomial order d are the unique functions that are globally in C^(d-2) and piecewise ...
We demonstrate that a program synthesis approach based on a linear code representation can be used t...
Treball Final de Grau en Química. Codi: QU0943. Curs: 2015/2016In this project we will apply the va...
In this contribution the sinc basis functions are used to numerically solve the Schrödinger equatio...
We present an efficient scheme for representing many-body wave functions in quantum Monte Carlo (QMC...
The Schrödinger equation is one of the most important equations in physics and chemistry and can be ...
[[abstract]]The use of the contracted basis functions is a very powerful and widely used techn...
Author Institution: Molecular Physics, SRI InternationalWe will describe recent developments and app...
The time-dependent and time-independent Schrödinger equations have been numerically solved for sever...
The paper reviews the history of B-spline methods for atomic structure calculations for bound states...
SOLVING THE SCHRODINGER EQUATION USING FUNDAMENTAL NUMERICAL PROCEDURES. A combination of the variat...
BSHF solves the Hartree–Fock equations in a B-spline basis for atoms, negatively charged ions, and s...
A large class of problems in quantum physics involve solution of the time independent Schrödinger eq...
Smolyak or sparse-grid interpolation enables one to accurately represent smooth multi-dimensional f...
We present a computer program which solves the Schrodinger equation of the stationary states for an ...
B-splines of polynomial order d are the unique functions that are globally in C^(d-2) and piecewise ...
We demonstrate that a program synthesis approach based on a linear code representation can be used t...
Treball Final de Grau en Química. Codi: QU0943. Curs: 2015/2016In this project we will apply the va...
In this contribution the sinc basis functions are used to numerically solve the Schrödinger equatio...
We present an efficient scheme for representing many-body wave functions in quantum Monte Carlo (QMC...
The Schrödinger equation is one of the most important equations in physics and chemistry and can be ...
[[abstract]]The use of the contracted basis functions is a very powerful and widely used techn...
Author Institution: Molecular Physics, SRI InternationalWe will describe recent developments and app...