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arXiv:hep-ph/9912343·v3·High Energy Physics — Phenomenology

Electroweak Symmetry Breaking and Extra Dimensions

Hsin-Chia Cheng🇺🇸 · Bogdan A. Dobrescu🇺🇸 · Christopher T. Hill🇺🇸

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Abstract

Electroweak symmetry can be naturally broken by observed quark and gauge fields in various extra-dimensional configurations. No new {\it fundamental} fields are required below the quantum gravitational scale ( 10 - 100 TeV). We examine schemes in which the QCD gauge group alone, in compact extra dimensions, forms a composite Higgs doublet out of (t,b)_L and a linear combination of the Kaluza-Klein modes of t_R. The effective theory at low energies is the Standard Model. The top-quark mass is controlled by the number of active t_R Kaluza-Klein modes below the string scale, and is in agreement with experiment.

Comments: 25 pages. More clarifications in section 2 on the equivalence between the orbifold projection and the boundary conditions. Version to be published in Nuclear Physics B

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