All JournalsPhysics Magazine

Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

The Scattering of Slow Neutrons by Ortho- and Paradeuterium

M. Hamermesh*

Julian Schwinger

  • New York University, University Heights, New York, New York

  • Harvard University, Cambridge, Massachusetts

  • *On leave at the Radio Research Laboratory, Harvard University, Cambridge, Massachusetts.
  • On leave at the Radiation Laboratory, Massachusetts Institute of Technology, Cambridge, Massachusetts.

Phys. Rev. 69, 145 – Published 1 March, 1946

DOI: https://doi.org/10.1103/PhysRev.69.145

Abstract

Information relating to the spin dependence of the neutron-deuteron interaction can be obtained from slow neutron scattering experiments in ortho- and paradeuterium. Theoretical formulae have been derived for the cross sections of the various transitions among the molecular rotational levels, which involve the scattering amplitudes a32 and a12 for the two spin states of the neutron-deuteron system. In particular, numerical results are given for the first few transitions originating from the ground levels of the ortho- and para-systems with neutron energies not exceeding 0.05 ev. The influence of the thermal motion of the molecule is described, and explicit formulae are given for the important transitions occurring at small neutron energies, on the assumption that the D2 is in gaseous form at low temperature. The ratio of the ortho- and para-cross sections, under these conditions, is examined in its dependence upon the ratio of the scattering amplitudes. If the scattering amplitudes are of the same sign, the cross-section ratio is never greater than 1.31 and attains this magnitude only for small values of a32 relative to a12. If, however, the amplitudes are of opposite sign, this ratio can be as large as 1.75 and always exceeds 1.11. This experiment measures only the magnitudes of the amplitude combinations (2a32+a12) and (a32a12), but not their signs, and thus leaves a fourfold ambiguity in interpretation. The possibility is discussed of determining the sign of (2a32+a12) by scattering experiments in HD. It is pointed out that the sign of (a32a12) cannot be fixed by any experiment in which the deuteron spin is unoriented in space. An alternative experimental method, involving the depolarization of neutrons, is mentioned.

References (11)

  1. reported at the New York meeting of the American Physical Society (Phys. Rev. 55, 679 (1939))
  2. J. Halpern, I. Estermann, O. C. Simpson, and O. Stern, Phys. Rev. 52, 142 (1937) F. G. Brickwedde, J. R. Dunning, H. J. Hoge, and J. H. Manley, 54, 266 (1938) W. F. Libby and E. A. Long, 55, 339 (1939) L. W. Alvarez and K. S. Pitzer, 58, 1003 (1940)
  3. J. Schwinger, Phys. Rev. 52, 1250 (1937)
  4. J. Schwinger and E. Teller, Phys. Rev. 52, 286 (1937)
  5. J. Schwinger, Phys. Rev. 58, 1004 (1940)
  6. [4]
  7. J. A. Stratton, Electromagnetic Theory (McGraw-Hill Book Company, Inc., New York, 1941), p. 413
  8. E. T. Whittaker and G. N. Watson, Modern Analysis (The MacMillan Company, New York, 1944), p. 331
  9. [7], p. 406
  10. A. Farkas, Orthohydrogen, Parahydrogen, and Heavy Hydrogen (Cambridge University Press, New York, 1935)
  11. Omitted endnote

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation