Communications - Scientific Letters of the University of Zilina 2010, 12(2):43-48 | DOI: 10.26552/com.C.2010.2.43-48

The Effective Description of Strong Electroweak Symmetry Breaking

Mikulas Gintner1, Josef Juran2, Ivan Melo1, Beata Trpisova1
1 Physics Department, University of Zilina, Slovakia
2 Institute of Experimental and Applied Physics, Czech Technical University in Prague, Czech Republic

The actual mechanism of electroweak symmetry breaking remains the last unsolved part of the Standard model of electroweak interactions. We review the general requirements that all possible solutions must fulfill. Based on them the effective description of the mechanism can be formulated. We offer such a description which is a modified version of the so-called BESS model and discuss its properties.

Keywords: electroweak symmetry breaking, effective Lagrangian, BESS model

Published: June 30, 2010  Show citation

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Gintner, M., Juran, J., Melo, I., & Trpisova, B. (2010). The Effective Description of Strong Electroweak Symmetry Breaking. Communications - Scientific Letters of the University of Zilina12(2), 43-48. doi: 10.26552/com.C.2010.2.43-48
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References

  1. YANG, C. N., MILLS, R. L.: Phys. Rev. 96, 1954, 191. Go to original source...
  2. GLASHOW, S. L.: Nucl. Phys. 22, 1961, 579; SALAM, A., WARD, J. C.: Phys. Lett. 13, 1964, 168; WEINBERG, S.: Phys. Rev. Lett. 19, 1967, 1264. Go to original source...
  3. ANDERSON, P. W.: Phys. Rev. 130, 1963, 439. Go to original source...
  4. ENGLERT, F., BROUT, R.: Phys. Rev. Lett. 13, 1964, 321; HIGGS, P. W.: Phys. Rev. Lett. 12, 1964, 132; Phys. Rev. Lett. 13, 1964, 508; Phys. Rev. 145, 1966, 145. Go to original source...
  5. HOOFT, G.: Nucl. Phys. B35, 1971, 167. Go to original source...
  6. CHENG, H-C.: Proceedings of 15th International Conference on Supersymmetry and the Unification of Fundamental Interactions (SUSY07), Karlsruhe, 2007, hep-ph/0710.3407.
  7. BANDO, M., KUGO, T., YAMAWAKI, K.: Phys. Rep. 164, 1988, 217. Go to original source...
  8. CASALBUONI, R., de CURTIS, S., DOMINICI, D., GATO, R.: Phys. Lett. B155, 1985, 95; CASALBUONI, R., de CURTIS, S., DOMINICI, D., GATO, R.: Nucl. Phys. B282, 1987, 235; CASALBUONI, R., CHIAPPETTA, P., de CURTIS, S., FERUGLIO, F., GATTO, R., MELE, B., TERRON, J.: Phys. Lett. B249, 1990, 130. Go to original source...
  9. GOLDSTONE, J.: Nuovo Cimento 19, 1961, 154; GOLDSTONE, J., SALAM, A., WEINBERG, S.: Phys. Rev. 127, 1962, 965. Go to original source...
  10. DOBADO, A., GOMEZ-NICOLA, A., MAROTO, A. L., PELAEZ, J. R.: Effective Lagrangians for the Standard Model, Springer 1997, ISBN 3-540-62570-4. Go to original source...
  11. GINTNER, M., MELO, I., TRPISOVA., B.: Acta Phys. Slov. 56, 2006, 473-483.
  12. GINTNER, M., MELO, I., TRPISOVA., B.: Proceedings of 16th Conference of Czech and Slovak Physicists, Hradec Kralove, 2007; Proceedings of 10th Small Triangle Meeting on Theoretical Physics, Medzilaborce, 2008, arXiv:0903.1981.
  13. GINTNER, M., JURAN, J., MELO, I.: The proceedings of The 2009 Europhysics Conference on High Energy Physics, July 16-22, 2009, Krakow, Poland.
  14. GINTNER, M., JURAN, J., MELO, I., TRPISOVA., B.: Proceedings of 17th Conference of Slovak Physicists, Bratislava, 2009.

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