Direct Test of the Scalar-Vector Lorentz Structure of the Nucleon- and Antinucleon-Nucleus Potential
arXiv:nucl-th/9907030 · doi:10.1088/0954-3899/25/5/308
Abstract
Quantum Hadrodynamics in mean field approximation describes the effective nucleon-nucleus potential (about -50 MeV deep) as resulting from a strong repulsive vector (about 400 MeV) and a strong attractive scalar (about -450 MeV) contribution. This scalar-vector Lorentz structure implies a significant lowering of the threshold for photoproduction on a nucleus by about 850 MeV as compared to the free case since charge conjugation reverses the sign of the vector potential contribution in the equation of motion for the states. It also implies a certain size of the photon induced pair creation cross section near threshold which is calculated for a target nucleus Pb. We also indicate a measurable second signature of the photoproduction process by estimating the increased cross section for emission of charged pions as a consequence of annihilation within the nucleus.
18 pages latex, 5 PS figures