The goal of this Letter is to calculate bound, resonant and scattering states in the coupled-channel formalism without relying on the boundary conditions at large distances. The coupled-channel solution is expanded in eigenchannel bases i.e. in eigenfunctions of diagonal Hamiltonians. Each eigenchannel basis may include discrete and discretized continuum (real or complex energy) single particle states. The coupled-channel solutions are computed through diagonalization in these bases. The method is applied to a few two-channel problems. The exact bound spectrum of the Poeschl–Teller potential is well described by using a basis of real energy continuum states. For deuteron described by Reid potential, the experimental energy and the S and D c...
For the three‐particle, two‐cluster, 2×2 channel coupling Hamiltonians used, e.g., in H+2 and He bou...
Background: In coupled-channels models the poles of the scattering S matrix are located on different...
We improve the complex scaling method (CSM) to obtain the virtual states, which were previously chal...
AbstractThe goal of this Letter is to calculate bound, resonant and scattering states in the coupled...
The continuum coupling in a one-dimensional scattering problem was studied within a semiclassical ap...
AbstractWe discuss the accurate computation of the eigensolutions of systems of coupled channel Schr...
The complete 3- part of the S matrix for O16 has been computed in the one-particle, one-hole approxi...
A new method for continuum discretization in continuum-discretized coupled-channels calculations is ...
The scattering of a weakly bound three-body system by a target is discussed. A transformed harmonic ...
A new separable-expansion method for realistic multichannel scattering problems is proposed. The app...
Journals published by the American Physical Society can be found at http://publish.aps.org
The development of a continuum-bin scheme of discretization for three-body projectiles is necessary ...
In this paper we develop a formalism to evaluate wave functions in momentum and coordinate space for...
We perform an analytical study of the scattering matrix and bound states in problems with many physi...
The problem of describing resonances when the continuum is represented by a discrete set of normaliz...
For the three‐particle, two‐cluster, 2×2 channel coupling Hamiltonians used, e.g., in H+2 and He bou...
Background: In coupled-channels models the poles of the scattering S matrix are located on different...
We improve the complex scaling method (CSM) to obtain the virtual states, which were previously chal...
AbstractThe goal of this Letter is to calculate bound, resonant and scattering states in the coupled...
The continuum coupling in a one-dimensional scattering problem was studied within a semiclassical ap...
AbstractWe discuss the accurate computation of the eigensolutions of systems of coupled channel Schr...
The complete 3- part of the S matrix for O16 has been computed in the one-particle, one-hole approxi...
A new method for continuum discretization in continuum-discretized coupled-channels calculations is ...
The scattering of a weakly bound three-body system by a target is discussed. A transformed harmonic ...
A new separable-expansion method for realistic multichannel scattering problems is proposed. The app...
Journals published by the American Physical Society can be found at http://publish.aps.org
The development of a continuum-bin scheme of discretization for three-body projectiles is necessary ...
In this paper we develop a formalism to evaluate wave functions in momentum and coordinate space for...
We perform an analytical study of the scattering matrix and bound states in problems with many physi...
The problem of describing resonances when the continuum is represented by a discrete set of normaliz...
For the three‐particle, two‐cluster, 2×2 channel coupling Hamiltonians used, e.g., in H+2 and He bou...
Background: In coupled-channels models the poles of the scattering S matrix are located on different...
We improve the complex scaling method (CSM) to obtain the virtual states, which were previously chal...