Hyperfine splittings in the system
arXiv:0912.2259 · doi:10.1016/j.nuclphysa.2011.06.032
Abstract
Recent measurements of the , the ground state of the system, show the splitting between it and the $\Up(1S)$ to be 69.53.2 MeV, considerably larger than lattice QCD and potential model predictions, including recent calculations published by us. The models are unable to incorporate such a large hyperfine splitting within the context of a consistent description of the energy spectrum and decays. We demonstrate that in our model, which incorporates a relativistic kinetic energy term, a linear confining term including its scalar-exchange relativistic corrections, and the complete one-loop QCD short distance potential, such a consistent description, including the measured hyperfine splitting, can be obtained by not softening the delta function terms in the hyperfine potential. We calculate the hyperfine splitting to be 67.5 MeV.
5 pages, 3 tables, text revisions