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A Hierarchy of Effective Field Theories of Hot Electroweak Matter

A. Jakovác, K. Kajantie, A. Patkós

hep-pharXiv:hep-ph/9312355

Abstract

Abst\-ract: A hierarchy of effective three-dimensional theories of finite temperature electroweak matter is studied. First an integration over non-static modes leads to an effective theory containing a gauge field Aia, an adjoint Higgs field A0a and the fundamental Higgs field ϕα. We carry out the integration in the 1-loop approximation, study renormalisation effects and estimate quantitatively those terms of the effective action which are suppressed by inverse powers of the temperature. Secondly, because of the existence of well-separated thermal mass scales, A0a can be integrated over, and finally also ϕα, leaving an effective theory of the Aia.In the analysis of the subsequent models particular attention is paid to the screening of the magnetic fluctuations due to the integrated-out degrees of freedom. Files of 2 Tables and 4 Figures are available in (la)tex-format upon request

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