Affiliation:
1. Eötvös Loránd University
Abstract
Spontaneous scale invariance breaking and the associated Goldstone
boson, the dilaton, is investigated in renormalizable, unitary,
interacting non-supersymmetric scalar field theories in
4-\varepsilon4−ε
dimensions. At leading order it is possible to construct models which
give rise to spontaneous scale invariance breaking classically and
indeed a massless dilaton can be identified. Beyond leading order, in
order to have no anomalous scale symmetry breaking in QFT, the models
need to be defined at a Wilson-Fisher fixed point with exact conformal
symmetry. It is shown that this requirement on the couplings is
incompatible with having the type of flat direction which would be
necessary for an exactly massless dilaton. As a result spontaneous scale
symmetry breaking and an exactly massless dilaton can not occur in
renormalizable, unitary 4-\varepsilon4−ε
dimensional scalar QFT. The arguments apply to
\phi^6ϕ6
theory in 3-\varepsilon3−ε
dimensions as well.
Subject
General Physics and Astronomy
Cited by
2 articles.
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