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arXiv:nucl-th/0007029·v2·Nuclear Theory

Saturation of low-energy antiproton annihilation on nuclei

A. Gal (Hebrew U.)🇮🇱 · E. Friedman (Henrew U.)🇮🇱 · C.J. Batty (RAL)🇬🇧

Abstract

Recent measurements of very low-energy ( MeV/c) annihilation on light nuclei reveal apparent suppression of annihilation upon increasing the atomic charge and mass number . Using -nucleus optical potentials , fitted to -atom energy-shifts and -widths, we resolve this suppression as due to the strong effective repulsion produced by the very absorptive . The low-energy -nucleus wavefunction is kept substantially outside the nuclear surface and the resulting reaction cross section saturates as function of the strength of Im . This feature, for , parallels the recent prediction, for , that the level widths of atoms saturate and, hence, that deeply bound atomic states are relatively narrow. Antiproton annihilation cross sections are calculated at MeV/c across the periodic table, and their dependence on and is classified and discussed with respect to the Coulomb focussing effect at very low energies.

Comments: 10 pages, 3 figures, slightly revised version, PLB in press

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