Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

Electroweak supersymmetric effects on high energy unpolarized and polarized single top quark production at CERN LHC

M. Beccaria1,2, F. M. Renard3, and C. Verzegnassi4,5

  • 1Dipartimento di Fisica, Università di LecceVia Arnesano, 73100 Lecce, Italy
  • 2INFN, Sezione di Lecce, Lecce, Italy
  • 3Physique Mathématique et Théorique, UMR 5825, Université Montpellier II, F-34095 Montpellier Cedex 5, France
  • 4Dipartimento di Fisica Teorica, Università di Trieste, Strada Costiera 14, Miramare (Trieste), Italy
  • 5INFN, Sezione di Trieste, Trieste, Italy

Phys. Rev. D 71, 033005 – Published 23 February, 2005

DOI: https://doi.org/10.1103/PhysRevD.71.033005

Abstract

We consider various processes of single top production at LHC in the theoretical framework of the MSSM and examine the role of the supersymmetric electroweak one-loop corrections in a special moderately light SUSY scenario, in an initial parton-pair c.m. high energy range where a logarithmic asymptotic expansion of Sudakov type can be used. We show that the electroweak virtual effects are systematically large, definitely beyond the relative 10% size, particularly for a final tH pair where a special enhancement is present. We show then in a qualitative way the kind of precision tests of the model that would be obtainable from accurate measurements of the energy distributions of the various cross sections and of the top polarization asymmetries.

Article Text

References (14)

  1. M. Beneke et al., in Proceedings of the Workshop on Standard Model Physics (and More) at the LHC, Geneva, 2000, edited by G. Altarelli and M. L. Mangano, p. 419.
  2. See complete references in [1].
  3. C. S. Li, R. J. Oakes, and J. M. Yang, Phys. Rev. D 55, 5780 (1997); C. S. Li, R. J. Oakes, J. M. Yang, and H. Y. Zhou, 57, 2009 (1998).
  4. A. Belyaev, D. Garcia, J. Guasch, and J. Sola, J. High Energy Phys. 06 (2002) 059; J. Guasch, P. Häfliger, and M. Spira, Phys. Rev. D 68, 115001 (2003).
  5. E. L. Berger, Tao Han, J. Jiang, and T. Plehn, hep-ph/0312286.
  6. D. P. Roy, Mod. Phys. Lett. A 19, 1813 (2004).
  7. M. Beccaria, F. M. Renard, C. Verzegnassi, Phys. Rev. D 69, 113004 (2004), and references therein.
  8. M. Beccaria, F. M. Renard, and C. Verzegnassi, Nucl. Phys. B663, 394 (2003).
  9. M. Carena, D. Garcia, U. Nierste, C. E. M. Wagnerand , Nucl. Phys. B577, 88 (2000).
  10. M. Beccaria, S. Bentvelsen, M. Cobal, F. M. Renard, and C. Verzegnassi, hep-ph/0412249.
  11. Higgs Working Group Collaboration, K. A. Assamagan et al., in “Physics at TeV Colliders 2003,” Proceedings of the 3rd Les Houches Summer School, Les Houches, France, 2003.
  12. See, e.g., R. K. Ellis, W. J. Stirling, and B. R. Webber, QCD and Colliders Physics, edited by T. Ericson and P. V. Landshoff (Cambridge University Press, Cambridge, United Kingdom, 1996).
  13. General information and updated numerical routines for parton distribution functions can be found at http://durpdg.dur.ac.uk/hepdata/. The set we used is described in A. D. Martin, R. G. Roberts, W. J. Stirling, R. S. Thorne, in Proceedings of the XI International Workshop on Deep Inelastic Scattering, St. Petersburg, 2003.
  14. A. Datta, A. Djouadi, and J-L. Kneur, Phys. Lett. B 509, 299 (2001); J. Gunion et al., ibid.565, 42 (2003).

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation