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Relativistic supersymmetric hadron multiplets

Rudolph C. Hwa*

C. S. Lam

  • Institute of Theoretical Science and Department of Physics, University of Oregon, Eugene, Oregon 97403

  • Department of Physics, McGill University, Montreal, Canada

  • *Research supported in part by U. S. Energy Research and Development Administration under Contract No. AT(45-1)-2230.
  • Research supported in part by the National Research Council of Canada.

Phys. Rev. D 13, 2096 – Published 1 April, 1976

DOI: https://doi.org/10.1103/PhysRevD.13.2096

Abstract

The supersymmetry scheme for hadrons proposed in a previous paper is generalized to the relativistic case. A way is found to limit the generators of the superalgebra to two components while allowing the baryon states to be four-component spinors. The problem of finding the most general product representation of supermultiplets is solved, and the result is expressed in terms of twelve scalar form factors satisfying two conditions. The transformation properties of the octet states under charge conjugation C, parity P, and CP are discussed.

References (6)

  1. R. C. Hwa and C. S. Lam, Phys. Rev. D 12, 3730 (1975)
  2. Omitted endnote

  3. J. Wess and B. Zumino, Nucl. Phys. B70, 39 (1974) Phys. Lett. 49B, 52 (1974) B. Zumino, in Proceedings of the XVII International Conference on High Energy Physics, London, 1974, edited by J. R. Smith (Rutherford Laboratory, Chilton, Didcot, Berkshire, England, 1974), p. I-254 A. Salam and J. Strathdee, Nucl. Phys. B76, 477 (1974) ibid.B80, 499 (1974)
  4. [3]
  5. Omitted endnote

  6. Omitted endnote

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