Elastic Scattering of Neutrons from Carbon and Oxygen in the Energy Range 3.0 to 4.7 MeV

D. Lister and A. Sayres
Phys. Rev. 143, 745 – Published 18 March 1966
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Abstract

The elastic scattering of neutrons from oxygen and carbon was studied in the neutron bombarding energy range 3.0 to 4.7 MeV. Angular distributions were obtained by the method of recoiling gas atoms in a proportional counter. Data were taken over the entire energy range in approximately 250-keV intervals, and in smaller intervals near certain resonances. Differential cross sections for C(n,n)C were obtained relative to the total np cross section. Similarly, O(n,n)O differential cross sections as well as the O16(n,α)C13 total cross section were determined relative to the derived C(n,n)C cross sections. A phase-shift search routine was used to find acceptable least-squares fits to a Legendre-polynomial decomposition of the elastic-scattering results. Energy-level parameters were obtained for five states in O17 and are given as follows (in the order: resonance energy relative to the O17 ground state in MeV, spin and parity, and dimensionless reduced width): 7.24(32+,0.15), 7.69(32,0.07), 7.70(72,<0.03), 7.83(12,0.04), and 8.07(32,0.02). Level parameters were also determined for two states in C13: 8.27(32+,0.45) and 8.87 (½, 0.03).

  • Received 11 August 1965

DOI:https://doi.org/10.1103/PhysRev.143.745

©1966 American Physical Society

Authors & Affiliations

D. Lister* and A. Sayres

  • Columbia University, New York, New York

  • *Present address: Argonne National Laboratory, Argonne, Illinois.
  • Present address: Department of Physics, Brooklyn College, New York, New York.

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Issue

Vol. 143, Iss. 3 — March 1966

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