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arXiv:hep-ph/0506157·v2·High Energy Physics — Phenomenology

Renormalization of a gapless Hartree-Fock approximation to a theory with spontaneously broken O(N)-symmetry

Yu. B. Ivanov (1 and 2)🇩🇪 · F. Riek (1)🇩🇪 · H. van Hees (3)🇺🇸 · J. Knoll (1) ((1) GSI Darmstadt, (2) Kurchatov Institute Moscow, (3) Texas A&M University)🇩🇪

Abstract

The renormalization of a gapless Phi-derivable Hartree--Fock approximation to the O(N)-symmetric lambda*phi^4 theory is considered in the spontaneously broken phase. This kind of approach was proposed by three of us in a previous paper in order to preserve all the desirable features of Phi-derivable Dyson-Schwinger resummation schemes (i.e., validity of conservation laws and thermodynamic consistency) while simultaneously restoring the Nambu--Goldstone theorem in the broken phase. It is shown that unlike for the conventional Hartree--Fock approximation this approach allows for a scale-independent renormalization in the vacuum. However, the scale dependence still persists at finite temperatures. Various branches of the solution are studied. The occurrence of a limiting temperature inherent in the renormalized Hartree--Fock approximation at fixed renormalization scale mu is discussed.

Comments: 11 pages, 14 figures / Version accepted by Phys. Rev. D: title and one reference changed

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