Examination of the evidence for a proton halo in Al
arXiv:2407.03749 · doi:10.1103/PhysRevC.110.014320
Abstract
More and more halo nuclei or candidates have been identified or suggested in experiments in recent years. It was declared that the halo structure of Al is revealed by the large isospin asymmetry in Si/O mirror Gamow-Teller transitions [Phys. Rev. Lett. 125, 192503 (2020)]. We highlight that a significant mirror asymmetry already exists between wave functions of the likely unbound nucleus Si and the doubly-magic nucleus O, which largely explains the observed asymmetry in the transitions. Furthermore, these transitions involve only the excited states of the daughter nuclei Al and F. The state of Al cannot be considered a halo state due to its proton-unbound nature. An analysis of the spin-parity suggests that a weakly bound valence proton in the ground state of Al is improbable. To investigate the shell structure for the ground state of Al, we employ the state-of-the-art deformed and triaxial relativistic Hartree-Bogoliubov theories in continuum. We find that a small -wave component of appears for the weakly bound valence proton in Al only when triaxial deformation is considered. While the examination of densities and rms radii indicates that this small -wave component is insufficient to form a discernible proton halo in Al, slightly larger occupations have been reported in other recent theoretical results. The question of how many low- components are sufficient to form a proton halo in the presence of the Coulomb barrier remains open. Thus, future measurements of reaction or interaction cross sections and momentum distributions of breakup fragments are highly desirable to verify whether Al is a halo nucleus.
Title revised as suggested by Editor, references updated
References in corpus (18)
- New parametrization for the nuclear covariant energy density functional with point-coupling interaction
- Deformed relativistic Hartree-Bogoliubov theory in continuum with point coupling functional: examples of even-even Nd isotopes
- Quasi-free Neutron Knockout Reaction Reveals a Small -orbital Component in the Borromean Nucleus B
- Nuclear mass table in deformed relativistic Hartree-Bogoliubov theory in continuum, II: Even- nuclei
- Predictive power for superheavy nuclear mass and possible stability beyond the neutron drip line in deformed relativistic Hartree-Bogoliubov theory in continuum
- Study of ground state properties of carbon isotopes with deformed relativistic Hartree-Bogoliubov theory in continuum
- Odd systems in deformed relativistic Hartree Bogoliubov theory in continuum
- Deformed relativistic Hartree-Bogoliubov theory in continuum with a point-coupling functional. II. Examples of odd Nd isotopes
- Two-proton radioactivity within a generalized liquid drop model
- Collapse of the shell closure in the newly discovered Na and the development of deformed halos towards the neutron dripline
- Possible bound nuclei beyond the two-neutron drip line in the region
- Missed prediction of the neutron halo in Mg
- Proton distribution radii of O: signatures of new shell closures and neutron skin
- Two-Proton Radioactivity with 2p halo in light mass nuclei A1834
- Neutron drip line in the deformed relativistic Hartree-Bogoliubov theory in continuum: Oxygen to Calcium
- Angular momentum projection in the deformed relativistic Hartree-Bogoliubov theory in continuum
- Optimized Dirac Woods-Saxon basis for covariant density functional theory
- Role of triaxiality in deformed halo nuclei
Cited by in corpus (4)
- Triaxial relativistic Hartree-Bogoliubov theory in continuum for exotic nuclei
- Exploratory study on the masses of odd- nuclei and -process simulation based on the deformed relativistic Hartree-Bogoliubov theory in continuum
- Structure evolution of ground and excited states in the exotic nucleus Al
- A ground state Al halo is unlikely