Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

Temporal Wilson loop in the Hamiltonian approach in Coulomb gauge

H. Reinhardt*, M. Quandt, and G. Burgio

  • Institut für Theoretische Physik, Auf der Morgenstelle 14, D-72076 Tübingen, Germany

  • *hugo.reinhardt@uni-tuebingen.de
  • markus.quandt@uni-tuebingen.de
  • giuseppe.burgio@uni-tuebingen.de

Phys. Rev. D 85, 025001 – Published 3 January, 2012

DOI: https://doi.org/10.1103/PhysRevD.85.025001

Abstract

We investigate the temporal Wilson loop using the Hamiltonian approach to Yang-Mills theory. In simple cases such as the Abelian theory or the non-Abelian theory in (1+1) dimensions, the known results can be reproduced using unitary transformations to take care of time evolution. We show how Coulomb gauge can be used for an alternative solution if the exact ground state wave functional is known. In the most interesting case of Yang-Mills theory in (3+1) dimensions, the vacuum wave functional is not known, but recent variational approaches in Coulomb gauge give a decent approximation. We use this formulation to compute the temporal Wilson loop and find that the Wilson and Coulomb string tension agree within our approximation scheme. Possible improvements of these findings are briefly discussed.

Article Text

References (35)

  1. D. Zwanziger, Phys. Rev. Lett. 90, 102001 (2003).
  2. K. Langfeld and L. Moyaerts, Phys. Rev. D 70, 074507 (2004).
  3. M. Quandt, G. Burgio, S. Chimchinda, and H. Reinhardt, Proc. Sci., LAT2007 (2007) 325 [arXiv:0710.0549].
  4. A. Voigt, E.-M. Ilgenfritz, M. Muller-Preussker, and A. Sternbeck, Proc. Sci., LAT2007 (2007) 338 [arXiv:0709.4585].
  5. A. Voigt, E.-M. Ilgenfritz, M. Muller-Preussker, and A. Sternbeck, Phys. Rev. D 78, 014501 (2008).
  6. G. Burgio, M. Quandt, and H. Reinhardt, Phys. Rev. Lett. 102, 032002 (2009).
  7. G. Burgio, M. Quandt, and H. Reinhardt, Phys. Rev. D 81, 074502 (2010).
  8. M. Quandt, H. Reinhardt, and G. Burgio, Phys. Rev. D 81, 065016 (2010).
  9. V. Gribov, Nucl. Phys. B139, 1 (1978).
  10. D. Zwanziger, Nucl. Phys. B485, 185 (1997).
  11. G. Burgio, R. De Pietri, H. Morales-Tecotl, L. Urrutia, and J. Vergara, Nucl. Phys. B566, 547 (2000).
  12. A. P. Szczepaniak and E. S. Swanson, Phys. Rev. D 65, 025012 (2001).
  13. C. Feuchter and H. Reinhardt, Phys. Rev. D 70, 105021 (2004).
  14. C. Feuchter and H. Reinhardt, arXiv:hep-th/0402106.
  15. H. Reinhardt and C. Feuchter, Phys. Rev. D 71, 105002 (2005).
  16. D. Epple, H. Reinhardt, and W. Schleifenbaum, Phys. Rev. D 75, 045011 (2007).
  17. D. Epple, H. Reinhardt, W. Schleifenbaum, and A. Szczepaniak, Phys. Rev. D 77, 085007 (2008).
  18. H. Reinhardt and W. Schleifenbaum, Ann. Phys. (N.Y.) 324, 735 (2009).
  19. W. Schleifenbaum, M. Leder, and H. Reinhardt, Phys. Rev. D 73, 125019 (2006).
  20. H. Reinhardt and D. Epple, Phys. Rev. D 76, 065015 (2007).
  21. H. Reinhardt, Phys. Rev. Lett. 101, 061602 (2008).
  22. M. Pak and H. Reinhardt, Phys. Rev. D 80, 125022 (2009).
  23. J. Erickson, G. Semenoff, R. Szabo, and K. Zarembo, Phys. Rev. D 61, 105006 (2000).
  24. P. E. Haagensen and K. Johnson, arXiv:hep-th/9702204.
  25. P. Gaete, Phys. Rev. D 59, 127702 (1999).
  26. T. Heinzl, A. Ilderton, K. Langfeld, M. Lavelle, W. Lutz, and D. McMullan, Phys. Rev. D 77, 054501 (2008).
  27. T. Heinzl, A. Ilderton, K. Langfeld, M. Lavelle, W. Lutz, and D. McMullan, Phys. Rev. D 78, 034504 (2008).
  28. N. Christ and T. Lee, Phys. Rev. D 22, 939 (1980).
  29. J. C. Collins, Renormalization. An Introduction to Renormalization, The Renormalization Group, and The Operator Product Expansion (Cambridge University Press, Cambridge, UK, 1984).
  30. J.-L. Gervais and A. Neveu, Nucl. Phys. B163, 189 (1980).
  31. A. M. Polyakov, Nucl. Phys. B164, 171 (1980).
  32. E. Witten, Commun. Math. Phys. 141, 153 (1991).
  33. M. Blau and G. Thompson, Int. J. Mod. Phys. A 7, 3781 (1992).
  34. J. E. Hetrick, Nucl. Phys. B, Proc. Suppl. 34, 805 (1994).
  35. M. Engelhardt and B. Schreiber, Z. Phys. A 351, 71 (1995).

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation