Abstract
The excitation of the lowest 3− and 5− levels in40Ca is studied using a microscopic description. The long-range part of the Hamada-Johnston potential is shown to be a good effective interaction especially when supplemented by a phenomenological imaginary term. Transition densities are constructed from holeparticle RPA wave functions normalized to give the correct electric transition rates. Various wave functions and other interactions are studied. Other features of the calculations are discussed.
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Research sponsored by the U. S. Atomic Energy Commission under contract with Union Carbide Corporation.
We are deeply indepted to R.M. Drisko for making available the DWBA code JULIE which he and W. G. Love generalized so as to calculate the finite-range exchange terms.
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Satchler, G.R. Effective interactions and the40Ca(p, p′) reaction. Z. Physik 260, 209–230 (1973). https://doi.org/10.1007/BF01395981
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DOI: https://doi.org/10.1007/BF01395981