Two-loop unitarity constraints on the Higgs boson coupling
Abstract
We use the results of Maher {\em et al.\/} (preceding paper) to construct the matrix of partial-wave two-body and scattering amplitudes for the scattering of longitudinally polarized gauge bosons , and Higgs bosons correct to two loops in the high-energy, heavy-Higgs limit . We show explicitly that the energy dependence of the amplitudes can be completely absorbed into a running quartic Higgs coupling and factors which involve small anomalous dimensions and remain near unity. After diagonalizing the matrix of partial-wave amplitudes, we use an Argand-diagram analysis to show that the elastic scattering amplitudes are approximately unitary and weakly interacting for , but that three-loop corrections are necessary to restore unitarity for larger values of . That is, the interactions in the Higgs sector of the standard model are effectively strong with respect to the perturbative expansion for . The bound for a weakly interacting theory translates to a physical Higgs mass GeV if the bound is to hold for energies up to a few TeV, or GeV in perturbatively unified theories with mass scales of order GeV.
Keywords
Cite
@article{arxiv.hep-ph/9303234,
title = {Two-loop unitarity constraints on the Higgs boson coupling},
author = {Loyal Durand and Peter N. Maher and Kurt Riesselmann},
journal= {arXiv preprint arXiv:hep-ph/9303234},
year = {2009}
}
Comments
29 pages, 6 figures available by request to LD, RevTEX 3.0, MAD/TH/92-7