Structure of Be and B hypernuclei studied with the four-body cluster model
arXiv:1205.6551 · doi:10.1143/PTP.128.105
Abstract
The structure of the isodoublet hypernuclei, B and Be within the framework of an four-body cluster model is studied. Interactions between the constituent subunits are determined so as to reproduce reasonably well the observed low-energy properties of the , , , and subsystems. Furthermore, the two-body interaction is adjusted so as to reproduce the - splitting of H. The binding energies of B and Be are 8.76 MeV and 8.94 MeV, respectively. The energy splitting of the - levels in B is 0.08 MeV, which does not contradict the experimental report in BNL-E930. An even-state charge symmetry breaking (CSB) interaction determined from the A=4 systems works repulsively by +0.1 MeV (attractively by -0.1 MeV) in Be (B). We discuss a possibility that an odd-state CSB interaction improves the fitting to the experimental data of A=10 double hypernuclei.
20 pages and 7 fugures, To be published in Progress of Theoretical Physics
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