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20022011
most citedRelativistic Continuum Hartree Bogoliubov Theory for Ground State Properties of Exotic Nuclei

1k citations

Showing 2008 · nucl-thShow all

11 papers · 2 filters

nucl-th200865 cited

Microscopic linear response calculations based on the Skyrme functional plus the pairing contribution

Jun Li, Gianluca Colo', Jie Meng

A self-consistent Quasiparticle-Random-Phase-Approximation (QRPA) model which employs the canonical Hartree-Fock-Bogoliubov (HFB) basis and an energy-density functional with a Skyr…

nucl-th200824 cited

Three-dimensional angular momentum projected relativistic point-coupling approach for the low-lying excited states in Mg

J. M. Yao, J. Meng, D. Pena Arteaga +1

A full three-dimensional angular momentum projection on top of a triaxial relativistic mean-Geld calculation is implemented for the first time. The underlying Lagrangian is a point…

nucl-th2008204 cited

Beyond the relativistic mean-field approximation (III): collective Hamiltonian in five dimensions

T. Niksic, Z. P. Li, D. Vretenar +3

The framework of relativistic energy density functionals is extended to include correlations related to restoration of broken symmetries and fluctuations of collective variables. A…

nucl-th2008156 cited

Spin-isospin resonances: A self-consistent covariant description

Haozhao Liang, Nguyen Van Giai, Jie Meng

For the first time a fully self-consistent charge-exchange relativistic RPA based on the relativistic Hartree-Fock (RHF) approach is established. The self-consistency is verified b…

nucl-th200876 cited

Deformed Coordinate-Space Hartree-Fock-Bogoliubov Approach to Weakly Bound Nuclei and Large Deformations

J. C. Pei, M. V. Stoitsov, G. I. Fann +3

The coordinate space formulation of the Hartree-Fock-Bogoliubov (HFB) method enables self-consistent treatment of mean-field and pairing in weakly bound systems whose properties ar…

nucl-th200853 cited

Chemical potential and the gap equation

Huan Chen, Wei Yuan, Lei Chang +3

In general the kernel of QCD's gap equation possesses a domain of analyticity upon which the equation's solution at nonzero chemical potential is simply obtained from the in-vacuum…