PTHWe investigate the properties of single-particle resonances in a non-spherical potential by solving the coupled-channels equations for the radial wave functions. We first generalize the box discretization method for positive energy states to a deformed system. As in the spherical case, we find that the discretized energy is stabilized against the box size when a resonance condition is met. Using the wave functions thus obtained, we then discuss the energy and the radial dependences of scattering wave functions in the vicinity of an isolated resonance. In the eigenchannel basis, where the S-matrix is diagonal, we propose a generalized expression for the factorization formula for the multi-channel wave function. We find that the factorized...
The Hamilton operator of an open quantum system is non-Hermitian. Its eigenvalues are generally comp...
In this paper we develop a formalism to evaluate wave functions in momentum and coordinate space for...
The goal of this Letter is to calculate bound, resonant and scattering states in the coupled-channel...
Single-particle bound and resonant states are obtained by solving the Dirac equation with quadrupole...
We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabiliz...
Single-particle resonance parameters and wave-functions in spherical and deformed nuclei are determi...
We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabiliz...
We investigate a numerical method for studying resonances in quantum mechanics. We prove rigorously ...
The radial Schrodinger equation was solved with the combination of three important potentials with q...
AbstractThe goal of this Letter is to calculate bound, resonant and scattering states in the coupled...
The eigenstates of a Woods-Saxon axially deformed potential are calculated by solving the correspond...
The momentum wavefunction fp of a particle in a box (with infinite potential walls) has been describ...
A general new technique to solve the two-center problem with arbitrarily oriented deformed realistic...
Positive-energy one-particle levels for neutrons in Y20 deformed Woods-Saxon potentials are examined...
The resonant state of open quantum systems is studied from the viewpoint of the eigen-function with ...
The Hamilton operator of an open quantum system is non-Hermitian. Its eigenvalues are generally comp...
In this paper we develop a formalism to evaluate wave functions in momentum and coordinate space for...
The goal of this Letter is to calculate bound, resonant and scattering states in the coupled-channel...
Single-particle bound and resonant states are obtained by solving the Dirac equation with quadrupole...
We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabiliz...
Single-particle resonance parameters and wave-functions in spherical and deformed nuclei are determi...
We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabiliz...
We investigate a numerical method for studying resonances in quantum mechanics. We prove rigorously ...
The radial Schrodinger equation was solved with the combination of three important potentials with q...
AbstractThe goal of this Letter is to calculate bound, resonant and scattering states in the coupled...
The eigenstates of a Woods-Saxon axially deformed potential are calculated by solving the correspond...
The momentum wavefunction fp of a particle in a box (with infinite potential walls) has been describ...
A general new technique to solve the two-center problem with arbitrarily oriented deformed realistic...
Positive-energy one-particle levels for neutrons in Y20 deformed Woods-Saxon potentials are examined...
The resonant state of open quantum systems is studied from the viewpoint of the eigen-function with ...
The Hamilton operator of an open quantum system is non-Hermitian. Its eigenvalues are generally comp...
In this paper we develop a formalism to evaluate wave functions in momentum and coordinate space for...
The goal of this Letter is to calculate bound, resonant and scattering states in the coupled-channel...