Single-particle bound and resonant states are obtained by solving the Dirac equation with quadrupole-deformed Woods-Saxon potential in coordinate space with the coupled-channel approach. Taking the m(pi) = 1/2(+) resonant states at deformation beta = 0.1 as examples, the roles of their spherical components have been investigated based on the behaviors of the eigenphases and the corresponding probabilities weighted by the scalar spherical potential. It is shown that the realization of the m(pi) = 1/2(+) resonances is supported mainly by the l not equal 0 components, and the mixture of the s(1/2) component can lead to the disappearance of some resonances at finite energy. The dominance of the l not equal 0 component (d(3/2)) in the small-ener...
Perturbation theory is used systematically to investigate the symmetries of the Dirac Hamiltonian an...
This paper is devoted to a study of relativistic eigenstates of Dirac particles which are simultaneo...
Taking Sn-120 as an example, we discuss the pseudospin symmetry in the single proton resonant states...
PTHWe investigate the properties of single-particle resonances in a non-spherical potential by solvi...
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...
The eigenstates of a Woods-Saxon axially deformed potential are calculated by solving the correspond...
Both positive-energy and weakly-bound one-particle levels for neutrons in Y20 deformed Woods-Saxon ...
Positive-energy one-particle levels for neutrons in Y20 deformed Woods-Saxon potentials are examined...
Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the c...
Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the c...
We calculate the single-particle resonances in a one-dimensional model potential and isotropic three...
We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabiliz...
A general new technique to solve the two-center problem with arbitrarily oriented deformed realistic...
The shell structure of low-lying neutron resonance levels in axially symmetric quadrupole-deformed p...
Perturbation theory is used systematically to investigate the symmetries of the Dirac Hamiltonian an...
This paper is devoted to a study of relativistic eigenstates of Dirac particles which are simultaneo...
Taking Sn-120 as an example, we discuss the pseudospin symmetry in the single proton resonant states...
PTHWe investigate the properties of single-particle resonances in a non-spherical potential by solvi...
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...
The eigenstates of a Woods-Saxon axially deformed potential are calculated by solving the correspond...
Both positive-energy and weakly-bound one-particle levels for neutrons in Y20 deformed Woods-Saxon ...
Positive-energy one-particle levels for neutrons in Y20 deformed Woods-Saxon potentials are examined...
Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the c...
Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the c...
We calculate the single-particle resonances in a one-dimensional model potential and isotropic three...
We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabiliz...
A general new technique to solve the two-center problem with arbitrarily oriented deformed realistic...
The shell structure of low-lying neutron resonance levels in axially symmetric quadrupole-deformed p...
Perturbation theory is used systematically to investigate the symmetries of the Dirac Hamiltonian an...
This paper is devoted to a study of relativistic eigenstates of Dirac particles which are simultaneo...
Taking Sn-120 as an example, we discuss the pseudospin symmetry in the single proton resonant states...