2008

CSW rules for massive matter legs and glue loops

Boels, Rutger, Schwinn, Christian

Understand

Cachazo-Svrcek-Witten-type Feynman rules for massive matter scalar legs and pure glue loops are presented, obtained by deriving them directly from the space-time action.

  • We comment on the derivation and some sample applications, in particular to calculating one loop effects in pure Yang-Mills theory.
  • Furthermore, we derive CSW rules for effective Higgs-gluon couplings studied in the literature.
  • In addition, it is shown how twistor techniques for deriving canonical field transformations explored for massless scalars extend to massless fermions.

Built on

  • S. R. Coleman and J. Mandula, Phys. Rev. 159

    1967

    Earlier work this paper cites.

  • S. J. Parke and T. R. Taylor, Phys. Rev. Lett. 56

    1986

    Earlier work this paper cites.

  • W. A. Bardeen, Prog. Theor. Phys. Suppl. 123

    1996

    Earlier work this paper cites.

  • G. Chalmers and W. Siegel, Phys. Rev. D 54

    1996

    Earlier work this paper cites.

  • E. Witten, Commun. Math. Phys. 252

    2004

    Earlier work this paper cites.

Similar

Then

  • J. H. Ettle and T. R. Morris, JHEP 0608

    2006

    Later among the works it cites.

  • J. H. Ettle, C. H. Fu, J. P. Fudger, P. R. W. Mansfield and T. R. Morris, JHEP 0705

    2007

    Later among the works it cites.

  • R. Boels, L. Mason and D. Skinner, JHEP 0702

    2007

    Later among the works it cites.

  • R. Boels, L. Mason and D. Skinner, Phys. Lett. B 648

    2007

    Later among the works it cites.

  • R. Boels and C. Schwinn, Phys. Lett. B 662

    Original

    2008

    Closest in time.

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