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Inelastic scattering of Li6 from Ni58 at 71 MeV

C. Williamson*, A. Galonsky, R. Huffman, and R. Markham

  • Cyclotron Laboratory, Michigan State University, East Lansing, Michigan 48824

  • *Present address: IBM Corporation, Rochester, Minn. 55901.
  • Present address: Physics Dep't., University of Massachusetts, Amherst, Mass. 01002.
  • Present address: Xerox Corporation, Webster, N.Y. 14580.

Phys. Rev. C 21, 1344 – Published 1 April, 1980

DOI: https://doi.org/10.1103/PhysRevC.21.1344

Abstract

Nine excited states of Ni58 were studied via the Ni58(Li6,Li6) reaction at 71.2 MeV. Two methods were employed to analyze the data. They were the distorted wave Born approximation, and the method of coupled channels. A comparison of their predictions and the information they provide about the nuclear deformation lengths is presented. In agreement with the Austern-Blair model for strongly absorbed particles, all five parameter sets produced equally good fits to the inelastic data.

NUCLEAR REACTIONS Ni58(Li6, Li6′) for Ni*58 energies E*=1.45, 2.46, 2.78, 3.04, 3.26, 3.62, 3.90, 4.48, and 4.75 MeV. Angular distributions measured, deformation lengths extracted.

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