The Goldstone boson equivalence theorem with fermions

Abstract

The calculation of the leading electroweak corrections to physical transition matrix elements in powers of MH2/v2 can be greatly simplified in the limit MH2 MW2,\, MZ2 through the use of the Goldstone boson equivalence theorem. This theorem allows the vector bosons W and Z to be replaced by the associated scalar Goldstone bosons w, z which appear in the symmetry breaking sector of the Standard Model in the limit of vanishing gauge couplings. In the present paper, we extend the equivalence theorem systematically to include the Yukawa interactions between the fermions and the Higgs and Goldstone bosons of the Standard Model. The corresponding Lagrangian LEQT is given, and is formally renormalized to all orders. The renormalization conditions are formulated both to make connection with physical observables and to satisfy the requirements underlying the equivalence theorem. As an application of this framework, we calculate the dominant radiative corrections to fermionic Higgs decays at one loop including the virtual effects of a heavy top quark. We apply the result to the decays H→ tt and H→ bb, and find that the equivalence theorem results including fermions are quite accurate numerically for Higgs-boson masses MH> 400\,(350) GeV, respectively, even for mt=175 GeV.

0

Turn this paper into a full lesson

ArcXiv compiles a staged curriculum from this paper: 8-12 lessons across beginner → advanced, synthesised section guides, visuals, flashcards, a quiz, exercises, and on-demand deep dives per section. Grounded in the abstract, never invented.

Discussion (0)

Sign in to join the discussion.

Loading comments…