Local Conformal Symmetry in Physics and Cosmology
Abstract
We show how to lift a generic non-scale invariant action in Einstein frame into a locally conformally-invariant (or Weyl-invariant) theory and present a new general form for Lagrangians consistent with Weyl symmetry. Advantages of such a conformally invariant formulation of particle physics and gravity include the possibility of constructing geodesically complete cosmologies. We present a conformal-invariant version of the standard model coupled to gravity, and show how Weyl symmetry may be used to obtain unprecedented analytic control over its cosmological solutions. Within this new framework, generic FRW cosmologies are geodesically complete through a series of big crunch - big bang transitions. We discuss a new scenario of cosmic evolution driven by the Higgs field in a \textquotedblleft minimal\textquotedblright% \ conformal standard model, in which there is no new physics beyond the standard model at low energies, and the current Higgs vacuum is metastable as indicated by the latest LHC data.
Keywords
Cite
@article{arxiv.1307.1848,
title = {Local Conformal Symmetry in Physics and Cosmology},
author = {Itzhak Bars and Paul Steinhardt and Neil Turok},
journal= {arXiv preprint arXiv:1307.1848},
year = {2014}
}
Comments
34 pages, 1 figure, v2 improves the presentation