We show that the symmetry-restored paired mean-field states (quasiparticle vacua) properly account for isoscalar versus isovector nuclear pairing properties. Full particle-number, spin, and isospin symmetries are restored in a simple SO(8) proton-neutron pairing model, and prospects to implement a similar approach in a realistic setting are delineated. Our results show that, provided all symmetries are restored, the pictures based on pair-condensate and quartet-condensate wave functions represent equivalent ways of looking at the physics of nuclear proton-neutron pairing
The isospin dependence of the effective pairing interaction is discussed on the basis of the Bardeen...
Experimental evidence indicates that pairing interaction often plays a major role in determining phy...
Rotating $N=Z$ nuclei in the mass $A=58-80$ region have been studied within the framework of isovect...
We show that the symmetry-restored paired mean-field states (quasiparticle vacua) properly account f...
The long-standing problem of neutron–proton pairing correlations is revisited by employing the Hartr...
The long standing problem of neutron-proton pairing correlations is revisited by employing the Hartr...
We investigate the BCS treatment of neutron-proton pairing involving time-reversed orbits. We conclu...
We utilize a nuclear shell model Hamiltonian with only two adjustable parameters to generate, for th...
A major task of nuclear structure theory is to develop an effective interaction that is capable to p...
An exactly solvable sp(4) algebraic approach extends beyond the traditional isospin-conserving nucle...
Within a simple SO(8) algebraic model, the coexistence between isoscalar and isovector pairing modes...
We examine isovector and isoscalar neutron-proton correlations in an exactly solvable model based on...
7 pages, 3 figures, 1 table, Accepted for publication in Phys. Rev. CInternational audienceIt is poi...
We have performed calculations based on the Skyrme energy density functional (EDF) that includes ar...
The role of neutron-proton pairing correlations on the structure of nuclei along the N = Z line is r...
The isospin dependence of the effective pairing interaction is discussed on the basis of the Bardeen...
Experimental evidence indicates that pairing interaction often plays a major role in determining phy...
Rotating $N=Z$ nuclei in the mass $A=58-80$ region have been studied within the framework of isovect...
We show that the symmetry-restored paired mean-field states (quasiparticle vacua) properly account f...
The long-standing problem of neutron–proton pairing correlations is revisited by employing the Hartr...
The long standing problem of neutron-proton pairing correlations is revisited by employing the Hartr...
We investigate the BCS treatment of neutron-proton pairing involving time-reversed orbits. We conclu...
We utilize a nuclear shell model Hamiltonian with only two adjustable parameters to generate, for th...
A major task of nuclear structure theory is to develop an effective interaction that is capable to p...
An exactly solvable sp(4) algebraic approach extends beyond the traditional isospin-conserving nucle...
Within a simple SO(8) algebraic model, the coexistence between isoscalar and isovector pairing modes...
We examine isovector and isoscalar neutron-proton correlations in an exactly solvable model based on...
7 pages, 3 figures, 1 table, Accepted for publication in Phys. Rev. CInternational audienceIt is poi...
We have performed calculations based on the Skyrme energy density functional (EDF) that includes ar...
The role of neutron-proton pairing correlations on the structure of nuclei along the N = Z line is r...
The isospin dependence of the effective pairing interaction is discussed on the basis of the Bardeen...
Experimental evidence indicates that pairing interaction often plays a major role in determining phy...
Rotating $N=Z$ nuclei in the mass $A=58-80$ region have been studied within the framework of isovect...