The Higgs Sector on a Two-Sheeted Space Time
Abstract
We present a general formalism based on the framework of non-commutative geometry, suitable to the study the standard model of electroweak interactions, as well as that of more general gauge theories. Left- and right-handed chiral fields are assigned to two different sheets of space-time (a discretized version of Kaluza-Klein theory). Scalar Higgs fields find themselves treated on the same footing as the gauge fields, resulting in spontaneous symmetry breaking in a natural and predictable way. We first apply the formalism to the Standard Model, where one can predict the Higgs mass and the top Yukawa coupling. We then study the left-right symmetric model, where we show that this framework imposes constraints on the type and coefficients of terms appearing in the Higgs potential.
Cite
@article{arxiv.hep-ph/0503147,
title = {The Higgs Sector on a Two-Sheeted Space Time},
author = {Cosmin Macesanu and Kameshwar C. Wali},
journal= {arXiv preprint arXiv:hep-ph/0503147},
year = {2009}
}
Comments
24 pages, uses revtex4