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  • Access by Xinjiang University

Spontaneous supersymmetry breaking in the gauge-invariant supersymmetric nonlinear σ models

E. J. Chun

  • Department of Physics, Seoul National University, Seoul 151-742, Korea

Phys. Rev. D 41, 2003 – Published 15 March, 1990

DOI: https://doi.org/10.1103/PhysRevD.41.2003

Abstract

We use the holomorphic formalism to investigate supersymmetry breaking of nonlinear σ models. For the homogeneous or nonhomogeneous nonlinear model with nondoubled Goldstone superfields, supersymmetry is broken and spin shattering occurs, which is the consequence of the existence of nondoubled Goldstone superfields. In the case of full-doubled nonlinear models, supersymmetry breaking is model dependent if we do not consider the nonlinear model as an effective theory of a fundamental linear theory. Otherwise supersymmetry should be preserved and the only possibility is full doubling.

References (14)

  1. M. Bando, T. Kuramoto, T. Maskawa, and S. Uehara, Prog. Theor. Phys. 72, 313 (1984) ibid.72, 1207 (1984) Phys. Lett. 138B, 94 (1984)
  2. G. M. Shore, Nucl. Phys. B320, 202 (1989)
  3. C. Callan, S. Coleman, J. Wess, and B. Zumino, Phys. Rev. 177, 2239 (1969) ibid.177, 2247 (1969)
  4. J. Bagger and E. Witten, Phys. Lett. 118B, 103 (1982)
  5. A. J. Buras and W. Slominski, Nucl. Phys. B223, 157 (1983)
  6. J. Bagger and J. Wess, Phys. Lett. B 199, 243 (1987)
  7. B. Zumino, Phys. Lett. 87B, 203 (1979)
  8. W. Buchmuller and W. Lerche, Ann. Phys. (N.Y.) 175, 159 (1987)
  9. C. L. Ong, Phys. Rev. D 27, 911 (1983)
  10. G. M. Shore, Nucl. Phys. B248, 123 (1984)
  11. R. Gatto and G. Sartori, Commun. Math. Phys. 109, 327 (1987) G. Girarde, P. Sorba, and R. Stora, Phys. Lett. 144B, 212 (1984)
  12. K. Itoh, T. Kugo, and H. Kunimoto, Nucl. Phys. B263, 295 (1986)
  13. W. Lerche, Nucl. Phys. B238, 582 (1984)
  14. P. H. Frampton and T. W. Kephart, Nucl. Phys. B211, 239 (1983)

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