Finite-rank expansions of the two-body resolvent operator are explored as a tool for calculating the full three-dimensional two-body T-matrix without invoking the partial-wave decomposition. The separable expansions of the full resolvent that follow from finite-rank approximations of the free resolvent are employed in the Low equation to calculate the T-matrix elements. The finite-rank expansions of the free resolvent are generated via projections onto certain finite-dimensional approximation subspaces. Types of operator approximations considered include one-sided projections (right or left projections), tensor-product (or outer) projection and inner projection. Boolean combination of projections is explored as a means of going beyond tenso...
A new separable-expansion method for realistic multichannel scattering problems is proposed. The app...
Several problems in computer algebra can be efficiently solved by reducing them to calculations over...
Realistic nucleon-nucleon potentials are an essential ingredient of modern microscopic many-body cal...
Cataloged from PDF version of article.Finite-rank expansions of the two-body resolvent operator are ...
We compare three methods to calculate the nucleon–nucleon t-matrix based on the three-dimensional fo...
We compare three methods to calculate the nucleon-nucleon t-matrix based on the three-dimensional fo...
We extend a new treatment proposed for two-nucleon (2N) and three-nucleon (3N) bound states to 2N s...
Abstract. We extend a new treatment proposed for two-nucleon (2N) and three-nucleon (3N) bound state...
We extend a new treatment proposed for two-nucleon (2N) and three-nucleon (3N) b...
Cataloged from PDF version of article.Recently there has been a growing interest in computational me...
Recently there has been a growing interest in computational methods for quantum scattering equations...
We apply the linear embedding via Green's operators (LEGO) method to the scattering by large finite ...
A formalism is developed whereby the two-body Lippmann-Schwinger equation may be solved in momentum ...
We present the reduced basis method as a tool for developing emulators for equations with tunable pa...
The nucleon-nucleon (NN) t matrix is calculated directly as function of two vector momenta for diffe...
A new separable-expansion method for realistic multichannel scattering problems is proposed. The app...
Several problems in computer algebra can be efficiently solved by reducing them to calculations over...
Realistic nucleon-nucleon potentials are an essential ingredient of modern microscopic many-body cal...
Cataloged from PDF version of article.Finite-rank expansions of the two-body resolvent operator are ...
We compare three methods to calculate the nucleon–nucleon t-matrix based on the three-dimensional fo...
We compare three methods to calculate the nucleon-nucleon t-matrix based on the three-dimensional fo...
We extend a new treatment proposed for two-nucleon (2N) and three-nucleon (3N) bound states to 2N s...
Abstract. We extend a new treatment proposed for two-nucleon (2N) and three-nucleon (3N) bound state...
We extend a new treatment proposed for two-nucleon (2N) and three-nucleon (3N) b...
Cataloged from PDF version of article.Recently there has been a growing interest in computational me...
Recently there has been a growing interest in computational methods for quantum scattering equations...
We apply the linear embedding via Green's operators (LEGO) method to the scattering by large finite ...
A formalism is developed whereby the two-body Lippmann-Schwinger equation may be solved in momentum ...
We present the reduced basis method as a tool for developing emulators for equations with tunable pa...
The nucleon-nucleon (NN) t matrix is calculated directly as function of two vector momenta for diffe...
A new separable-expansion method for realistic multichannel scattering problems is proposed. The app...
Several problems in computer algebra can be efficiently solved by reducing them to calculations over...
Realistic nucleon-nucleon potentials are an essential ingredient of modern microscopic many-body cal...