Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the coupling constant (ACCC) method within the framework of the self-consistent relativistic mean field (RMF) theory. Taking the neutron resonant state $\nu 1g_{9/2}$ in $^{60}$Ca as an example, we examine the analyticity of the eigenvalue and eigenfunction for the Dirac equation with respect to the coupling constant by means of a $\pade$ approximant of the second kind. The RMF-ACCC approach is then applied to $^{122}$Zr and, for the first time, this approach is employed to investigate both the energies, widths and wave functions for $l\ne 0$ resonant states close to the continuum threshold. Predictions are also compared with corresponding results...
The Relativistic Mean Field (RMF) approach describing the motion of independent particles in effecti...
A proper treatment of the resonant continuum is to take account of not only the energy of the resona...
Single-particle bound and resonant states are obtained by solving the Dirac equation with quadrupole...
Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the c...
With the relativistic boundary condition, single-proton resonant states in spherical nuclei are stud...
Energies and widths for single-particle resonant states in the continuum in Sn-120, as the necessary...
We present a simple scheme for taking into account the resonant continuum coupling in the relativist...
The physics of exotic nuclei with unusual N/Z ratios (isospin)-has attracted world-wide attention. T...
Single-particle resonance states of Zr-122 are studied in the real stabilization method within the f...
Abstract With the relativistic boundary condition, single proton resonant states in spherical nuclei...
For the first time, the analytical continuation in the coupling constant method has been combined wi...
With the relativistic boundary condition, single proton resonant states in spherical nuclei are stud...
Single-particle resonance states of 122Zr are studied in the real stabilization method within the fr...
Single-particle resonance parameters and wave-functions in spherical and deformed nuclei are determi...
A simple scheme with the single-particle resonant continuum coupling and pairing correlations, is ap...
The Relativistic Mean Field (RMF) approach describing the motion of independent particles in effecti...
A proper treatment of the resonant continuum is to take account of not only the energy of the resona...
Single-particle bound and resonant states are obtained by solving the Dirac equation with quadrupole...
Single-particle resonant states in spherical nuclei are studied by an analytic continuation in the c...
With the relativistic boundary condition, single-proton resonant states in spherical nuclei are stud...
Energies and widths for single-particle resonant states in the continuum in Sn-120, as the necessary...
We present a simple scheme for taking into account the resonant continuum coupling in the relativist...
The physics of exotic nuclei with unusual N/Z ratios (isospin)-has attracted world-wide attention. T...
Single-particle resonance states of Zr-122 are studied in the real stabilization method within the f...
Abstract With the relativistic boundary condition, single proton resonant states in spherical nuclei...
For the first time, the analytical continuation in the coupling constant method has been combined wi...
With the relativistic boundary condition, single proton resonant states in spherical nuclei are stud...
Single-particle resonance states of 122Zr are studied in the real stabilization method within the fr...
Single-particle resonance parameters and wave-functions in spherical and deformed nuclei are determi...
A simple scheme with the single-particle resonant continuum coupling and pairing correlations, is ap...
The Relativistic Mean Field (RMF) approach describing the motion of independent particles in effecti...
A proper treatment of the resonant continuum is to take account of not only the energy of the resona...
Single-particle bound and resonant states are obtained by solving the Dirac equation with quadrupole...