Universal features of continuous phase transitions can be investigated by studying the φ4 field theory with the corresponding global symmetry breaking pattern. When gauge symmetries are present, the same technique is usually applied to a gauge-invariant order parameter field, as in the Pisarski-Wilczek analysis of the QCD chiral phase transition. Gauge fields are thus assumed to be irrelevant in the effective critical model, a fact that is however far from trivial. We will investigate the validity of this approach using three-dimensional scalar lattice models with non-abelian global and local symmetries, for which critical exponents and scaling functions can be numerically determined with high accuracy.

Global symmetry breaking in gauge theories: the case of multiflavor scalar chromodynamics / Bonati, C.; Pelissetto, A.; Vicari, E.. - (2022). (Intervento presentato al convegno Lattice 2021 tenutosi a Zoom/Gather@Massachusetts Institute of Technology).

Global symmetry breaking in gauge theories: the case of multiflavor scalar chromodynamics

A. Pelissetto;
2022

Abstract

Universal features of continuous phase transitions can be investigated by studying the φ4 field theory with the corresponding global symmetry breaking pattern. When gauge symmetries are present, the same technique is usually applied to a gauge-invariant order parameter field, as in the Pisarski-Wilczek analysis of the QCD chiral phase transition. Gauge fields are thus assumed to be irrelevant in the effective critical model, a fact that is however far from trivial. We will investigate the validity of this approach using three-dimensional scalar lattice models with non-abelian global and local symmetries, for which critical exponents and scaling functions can be numerically determined with high accuracy.
2022
Lattice 2021
Finite-size scaling; critical behavior; three-dimensional gauge theories
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Global symmetry breaking in gauge theories: the case of multiflavor scalar chromodynamics / Bonati, C.; Pelissetto, A.; Vicari, E.. - (2022). (Intervento presentato al convegno Lattice 2021 tenutosi a Zoom/Gather@Massachusetts Institute of Technology).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1636446
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