Abstract

Nuclear electroexcitations above the giant resonance energy· region in electron scattering are studied using the quasielastic model. A realistic Woods-Saxon single· particle potential is used in the calculation. The excitation. functions Jor large as welL as small momentum transfers to nuclei are well explained within our model. The position and the width of the quasielastic peak are shown to reflect the binding energies of deep hole states. Our result supports values of the binding energies obtained by the recent (e, e' p) experiment. A scal­ ing hypothesis is considered to connect experimentaJ data on different momentum and energy transfers and use of ,such a hypothesis is discussed in. making an estimate of the non-resonant background term in the giant resonance region.

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