AbstractWe provide a description of odd–odd self-conjugate nuclei in the sd shell in a formalism of collective quartets and pairs. Quartets are four-body structures carrying isospin T=0 while pairs can have either T=0 or T=1. Both quartets and pairs are labeled by the angular momentum J and they are chosen so as to describe the lowest states of 20Ne (quartets) and the lowest T=0 and T=1 states of 18F (pairs). We carry out configuration interaction calculations in spaces built by one quartet and one pair for 22Na and by two quartets and one pair for 26Al. The spectra that are generated are in good agreement with the shell model and experimental ones. These calculations confirm the relevance of quartetting in the structure of N=Z nuclei that ...
We present results of a calculation of properties of low-lying collective quadrupole states in odd-e...
Wave-functions from the newly proposed O(18) coupling scheme in IBM-3 are compared with those from a...
The binding energies of even-even and odd-odd N=Z nuclei are compared. After correcting for the symm...
We provide a description of odd–odd self-conjugate nuclei in the sd shell in a formalism of collecti...
We provide a description of even-even N = Z nuclei in a formalism of quartets. Quartets are four-bod...
AbstractIsoscalar (T=0, J=1) and isovector (T=1, J=0) pairing correlations in the ground state of se...
Isoscalar (T=0, J=1) and isovector (T=1, J=0) pairing correlations in the ground state of self-conju...
Algebraic models are proposed for the description of the shell-like quarteting of the nucleons both ...
AbstractAlgebraic models are proposed for the description of the shell-like quarteting of the nucleo...
AbstractHigh-spin states in the odd–odd N=Z nucleus 5025Mn have been investigated. A sequence of sta...
AbstractThe isoscalar proton–neutron pairing and isovector pairing, including both isovector proton–...
We present a new analysis of the pairing vibrations around 56Ni, with emphasis on odd-odd nuclei. Th...
Two variational quartet models previously employed in a treatment of pairing forces are extended to ...
Pairing and quartetting are competing phenomena in nuclei. In the selfconjugate nuclei from the fp-s...
We perform shell model calculations in odd-odd nuclei using a quadrupole-quadrupole interaction and ...
We present results of a calculation of properties of low-lying collective quadrupole states in odd-e...
Wave-functions from the newly proposed O(18) coupling scheme in IBM-3 are compared with those from a...
The binding energies of even-even and odd-odd N=Z nuclei are compared. After correcting for the symm...
We provide a description of odd–odd self-conjugate nuclei in the sd shell in a formalism of collecti...
We provide a description of even-even N = Z nuclei in a formalism of quartets. Quartets are four-bod...
AbstractIsoscalar (T=0, J=1) and isovector (T=1, J=0) pairing correlations in the ground state of se...
Isoscalar (T=0, J=1) and isovector (T=1, J=0) pairing correlations in the ground state of self-conju...
Algebraic models are proposed for the description of the shell-like quarteting of the nucleons both ...
AbstractAlgebraic models are proposed for the description of the shell-like quarteting of the nucleo...
AbstractHigh-spin states in the odd–odd N=Z nucleus 5025Mn have been investigated. A sequence of sta...
AbstractThe isoscalar proton–neutron pairing and isovector pairing, including both isovector proton–...
We present a new analysis of the pairing vibrations around 56Ni, with emphasis on odd-odd nuclei. Th...
Two variational quartet models previously employed in a treatment of pairing forces are extended to ...
Pairing and quartetting are competing phenomena in nuclei. In the selfconjugate nuclei from the fp-s...
We perform shell model calculations in odd-odd nuclei using a quadrupole-quadrupole interaction and ...
We present results of a calculation of properties of low-lying collective quadrupole states in odd-e...
Wave-functions from the newly proposed O(18) coupling scheme in IBM-3 are compared with those from a...
The binding energies of even-even and odd-odd N=Z nuclei are compared. After correcting for the symm...