English

A Model of Low-lying States in Strongly Interacting Electroweak Symmetry-Breaking Sector

High Energy Physics - Phenomenology 2009-10-28 v3

Abstract

It is proposed that, in a strongly-interacting electroweak sector, besides the Goldstone bosons, the coexistence of a scalar state (HH) and vector resonances such as A1A_1 [IG(JP)=1(1+I^G(J^P)=1^-(1^+)], VV [1+(1)1^+(1^-)] and ωH\omega_H^{} [0(1)0^-(1^-)] is required by the proper Regge behavior of the forward scattering amplitudes. This is a consequence of the following well-motivated assumptions: (a). Adler-Weisberger-type sum rules and the superconvergence relations for scattering amplitudes hold in this strongly interacting sector; (b). the sum rules at t=0t=0 are saturated by a minimal set of low-lying states with appropriate quantum numbers. It therefore suggests that a complete description should include all these resonances. These states may lead to distinctive experimental signatures at future colliders.

Keywords

Cite

@article{arxiv.hep-ph/9411445,
  title  = {A Model of Low-lying States in Strongly Interacting Electroweak Symmetry-Breaking Sector},
  author = {T. Han and Z. Huang and P. Q. Hung},
  journal= {arXiv preprint arXiv:hep-ph/9411445},
  year   = {2009}
}

Comments

revised version, to appear in Modern Physics Letters A; file also available via anonymous ftp at ftp://ucdhep.ucdavis.edu/han/sews/lowlying.ps