We describe a FORTRAN-90 program that computes scattering t-matrices for a molecule. These can be used in a Low-Energy Electron Diffraction program to solve the molecular structural problem very efficiently. The intramolecular multiple scattering is computed within a Dyson-like approach, using free space Green propagators in a basis of spherical waves. The advantage of this approach is related to exploiting the chemical identity of the molecule, and to the simplicity to translate and rotate these t-matrices without performing a new multiple-scattering calculation for each configuration. FORTRAN-90 routines for rotating the resulting t-matrices using Wigner matrices are also provided
In scattering calculations using the T-matrix method, the calculation of the T-matrix involves multi...
A method for the simulation of electron scattering and diffraction in solids and molecules within th...
We have implemented a three-dimensional finite element approach, based on tricubic polynomials in sp...
We present a novel approach to calculating Low-Energy Electron Diffraction (LEED) intensities for or...
We describe a FORTRAN-90 program to compute low-energy electron diffraction I(V) curves. Plane-waves...
The authors discuss two discrete-basis-function approaches to the solution of the T-matrix equations...
Multiple scattering theory is applied to low-energy electron collisions with a complex target formed...
We present a method for calculating the continuum wave function in electron-molecule scattering for ...
A new computational code based on the method of continued fractions is developed to study low-energy...
We describe the UK computational implementation of the R-matrix method for the treatment of electron...
We describe the UK computational implementation of the R-matrix method for the treatment o...
Abstract. We present a simple, approximate method for calculating low-energy electron-molecule scatt...
The elastic scattering cross sections for a slow electron by C2 and H2 molecules have been calculate...
Links between two well known methods: methods of zero-range and non-overlapped (muffin-tin) potentia...
International audienceWe present the latest developments of the R-matrix method as applied to electr...
In scattering calculations using the T-matrix method, the calculation of the T-matrix involves multi...
A method for the simulation of electron scattering and diffraction in solids and molecules within th...
We have implemented a three-dimensional finite element approach, based on tricubic polynomials in sp...
We present a novel approach to calculating Low-Energy Electron Diffraction (LEED) intensities for or...
We describe a FORTRAN-90 program to compute low-energy electron diffraction I(V) curves. Plane-waves...
The authors discuss two discrete-basis-function approaches to the solution of the T-matrix equations...
Multiple scattering theory is applied to low-energy electron collisions with a complex target formed...
We present a method for calculating the continuum wave function in electron-molecule scattering for ...
A new computational code based on the method of continued fractions is developed to study low-energy...
We describe the UK computational implementation of the R-matrix method for the treatment of electron...
We describe the UK computational implementation of the R-matrix method for the treatment o...
Abstract. We present a simple, approximate method for calculating low-energy electron-molecule scatt...
The elastic scattering cross sections for a slow electron by C2 and H2 molecules have been calculate...
Links between two well known methods: methods of zero-range and non-overlapped (muffin-tin) potentia...
International audienceWe present the latest developments of the R-matrix method as applied to electr...
In scattering calculations using the T-matrix method, the calculation of the T-matrix involves multi...
A method for the simulation of electron scattering and diffraction in solids and molecules within th...
We have implemented a three-dimensional finite element approach, based on tricubic polynomials in sp...