Truncation effects in the functional renormalization group study of spontaneous symmetry breaking

被引:0
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作者
N. Defenu
P. Mati
I. G. Márián
I. Nándori
A. Trombettoni
机构
[1] SISSA,
[2] CNR-IOM DEMOCRITOS Simulation Center,undefined
[3] Budapest University of Technology and Economics,undefined
[4] Department of Theoretical Physics,undefined
[5] University of Debrecen,undefined
[6] Eötvös University,undefined
[7] Department of Atomic Physics,undefined
[8] MTA-DE Particle Physics Research Group,undefined
[9] MTA Atomki,undefined
[10] INFN,undefined
[11] Sezione di Trieste,undefined
关键词
Field Theories in Lower Dimensions; Spontaneous Symmetry Breaking; Renormalization Group; Renormalization Regularization and Renormalons;
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摘要
We study the occurrence of spontaneous symmetry breaking (SSB) for O(N ) models using functional renormalization group techniques. We show that even the local potential approximation (LPA) when treated exactly is sufficient to give qualitatively correct results for systems with continuous symmetry, in agreement with the Mermin-Wagner theorem and its extension to systems with fractional dimensions. For general N (including the Ising model N = 1) we study the solutions of the LPA equations for various truncations around the zero field using a finite number of terms (and different regulators), showing that SSB always occurs even where it should not. The SSB is signalled by Wilson-Fisher fixed points which for any truncation are shown to stay on the line defined by vanishing mass beta functions.
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