A standard technique for solving three-dimensional momentum-space integral equations in scattering theory is their transformation into one-dimensional equations in terms of partial waves. However, for some scattering systems where a large number of partial waves contribute this technique is not efficient. In this work we explore the alternative approach of solving these equations directly without partial-wave expansion. For illustrative purposes we adopt the coupled-channel approach and consider a well-studied static-exchange model of electron-hydrogen scattering
Although the convergent close-coupling (CCC) method has achieved unprecedented success in obtaining ...
The nucleon-nucleon (NN) t matrix is calculated directly as function of two vector momenta for diffe...
Scattering and reaction cross sections of $e^{\pm}-Ps$ system are calculated for total angular momen...
Direct numerical solution of the coordinate-space integral-equation version of the two-particle Lipp...
A fully quantal approach to proton collisions with hydrogen based on the atomic-orbital close-coupli...
The Faddeev equations for the three body bound state are solved directly as three dimensional integr...
A formalism is developed whereby the two-body Lippmann-Schwinger equation may be solved in momentum ...
Cataloged from PDF version of article.Recently there has been a growing interest in computational me...
In the last twenty years, electron-atom scattering theory has witnessed significant theoretical deve...
AbstractThree-charge-particle quantum systems with arbitrary masses are treated by a general formali...
Solving the close-coupling equations for electron–atom scattering in momentum space involves the sol...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A new spectral type method for solving the one dimensional quantum-mechanical Lippmann-Schwinger int...
A version of the $J$-matrix method for solving numerically the three-body Faddeev-Merkuriev differen...
The angular momentum (partial wave) reduction of the Lippmann--Schwinger equation describing the int...
Although the convergent close-coupling (CCC) method has achieved unprecedented success in obtaining ...
The nucleon-nucleon (NN) t matrix is calculated directly as function of two vector momenta for diffe...
Scattering and reaction cross sections of $e^{\pm}-Ps$ system are calculated for total angular momen...
Direct numerical solution of the coordinate-space integral-equation version of the two-particle Lipp...
A fully quantal approach to proton collisions with hydrogen based on the atomic-orbital close-coupli...
The Faddeev equations for the three body bound state are solved directly as three dimensional integr...
A formalism is developed whereby the two-body Lippmann-Schwinger equation may be solved in momentum ...
Cataloged from PDF version of article.Recently there has been a growing interest in computational me...
In the last twenty years, electron-atom scattering theory has witnessed significant theoretical deve...
AbstractThree-charge-particle quantum systems with arbitrary masses are treated by a general formali...
Solving the close-coupling equations for electron–atom scattering in momentum space involves the sol...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A new spectral type method for solving the one dimensional quantum-mechanical Lippmann-Schwinger int...
A version of the $J$-matrix method for solving numerically the three-body Faddeev-Merkuriev differen...
The angular momentum (partial wave) reduction of the Lippmann--Schwinger equation describing the int...
Although the convergent close-coupling (CCC) method has achieved unprecedented success in obtaining ...
The nucleon-nucleon (NN) t matrix is calculated directly as function of two vector momenta for diffe...
Scattering and reaction cross sections of $e^{\pm}-Ps$ system are calculated for total angular momen...