AbstractWe propose a procedure to determine the effective nuclear shell-model Hamiltonian in a truncated space from a self-consistent mean-field model, e.g., the Skyrme model. The parameters of pairing plus quadrupole–quadrupole interaction with monopole force are obtained so that the potential energy surface of the Skyrme Hartree–Fock+BCS calculation is reproduced. We test our method for N=Z nuclei in the fpg- and sd-shell regions. It is shown that the calculated energy spectra with these parameters are in a good agreement with experimental data, in which the importance of the monopole interaction is discussed. This method may represent a practical way of defining the Hamiltonian for general shell-model calculations
We perform Shell Model Monte Carlo calculations of selected N=Z pf-shell nuclei with a schematic ham...
The spectral and statistical properties of nuclei $^{46}$V and $^{48}$Cr are studied in the framewor...
We study the ability of variational approaches based on self-consistent mean-field and beyond-mean-f...
AbstractWe propose a procedure to determine the effective nuclear shell-model Hamiltonian in a trunc...
We propose a procedure to determine the effective nuclear shell-model Hamiltonian in a truncated spa...
Self-consistent mean-field models are a powerful tool in the investigation of nuclear structure and ...
A novel way of determining the Hamiltonian of the interacting boson model (IBM) is proposed. Based o...
Shell corrections to the nuclear binding energy as a measure of shell effects in superheavy nuclei a...
The interacting boson model (IBM) Hamiltonian is determined microscopically for general cases of low...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
We present shell model Monte Carlo calculations for nuclei in the full major shell 50–82 for both pr...
An extended pairing Hamiltonian that describes pairing interactions among monopole nucleon pairs up ...
Shell corrections to the nuclear binding energy as a measure of shell effects in superheavy nuclei a...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
We perform Shell Model Monte Carlo calculations of selected N=Z pf-shell nuclei with a schematic ham...
The spectral and statistical properties of nuclei $^{46}$V and $^{48}$Cr are studied in the framewor...
We study the ability of variational approaches based on self-consistent mean-field and beyond-mean-f...
AbstractWe propose a procedure to determine the effective nuclear shell-model Hamiltonian in a trunc...
We propose a procedure to determine the effective nuclear shell-model Hamiltonian in a truncated spa...
Self-consistent mean-field models are a powerful tool in the investigation of nuclear structure and ...
A novel way of determining the Hamiltonian of the interacting boson model (IBM) is proposed. Based o...
Shell corrections to the nuclear binding energy as a measure of shell effects in superheavy nuclei a...
The interacting boson model (IBM) Hamiltonian is determined microscopically for general cases of low...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
We present shell model Monte Carlo calculations for nuclei in the full major shell 50–82 for both pr...
An extended pairing Hamiltonian that describes pairing interactions among monopole nucleon pairs up ...
Shell corrections to the nuclear binding energy as a measure of shell effects in superheavy nuclei a...
We study the extrapolation of nuclear shell structure to the region of superheavy nuclei in self-con...
We perform Shell Model Monte Carlo calculations of selected N=Z pf-shell nuclei with a schematic ham...
The spectral and statistical properties of nuclei $^{46}$V and $^{48}$Cr are studied in the framewor...
We study the ability of variational approaches based on self-consistent mean-field and beyond-mean-f...