arXiv:2604.00834·v1·Nuclear Theory
One neutron triaxial halo candidates in aluminum isotopes from reaction observables
Jia-Lin An · Shi-Sheng Zhang · Kaiyuan Zhang
Abstract
Microscopic description of one neutron () halo candidates Al, with particular triaxial shape, is presented by combining the triaxial relativistic Hartree-Bogoliubov theory in continuum (TRHBc) with the Glauber reaction model for the first time. In this scheme, the reaction cross sections of aluminum isotopes on a carbon target at 240 and 900 MeV/A are calculated, which exhibit a pronounced increase for Al + C deviating from the systematic trend of their neighbours. Furthermore, the predicted longitudinal momentum distributions of the residues after removal reactions for Al + C are narrower than those for Al + C, which suggest halo structure with spatially extended density distribution. Based on the large occupation probabilities of -wave valence neutrons, we identify Al as the first triaxially deformed -wave halo candidates. This work cast a new light on the search for the heavier halo nuclei for future experiments in the mass region of , through theoretical predictions from triaxial structure to reaction observables.
Comments: 4 pages, 2 figures