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Título: Conformal invariance and composite operators: a strategy for improving the derivative expansion of the nonperturbative renormalization group
Autor: Delamotte, Bertrand
De Polsi Astapenco, Gonzalo
Tissier, Matthieu
Wschebor, Nicolás
Tipo: Preprint
Palabras clave: Condensed matter, High energy physics, Statistical mechanics
Fecha de publicación: 2024
Resumen: It is expected that conformal symmetry is an emergent property of many systems at their critical point. This imposes strong constraints on the critical behavior of a given system. Taking them into account in theoretical approaches can lead to a better understanding of the critical physics or improve approximation schemes. However, within the framework of the non-perturbative or functional renormalization group and, in particular, of one of its most used approximation schemes, the Derivative Expansion (DE), non-trivial constraints only apply from third order (usually denoted O(∂ 4)), at least in the usual formulation of the DE that includes correlation functions involving only the order parameter. In this work, we implement conformal constraints on a generalized DE including composite operators and show that new constraints already appear at second order of the DE (or O(∂2)). We show how these constraints can be used to fix nonphysical regulator parameters.
Descripción: Publicado también en: Physical Review E, 2024, 109(6): 064152. DOI: 10.1103/PhysRevE.109.064152
Editorial: arXiv
EN: Statistical Mechanics, arXiv:2401.02517, may 2024.
Financiadores: ANII: FCE_1_2021_1_166479
Citación: Delamotte, B, De Polsi Astapenco, G, Tissier, M [y otro autor]. "Conformal invariance and composite operators: a strategy for improving the derivative expansion of the nonperturbative renormalization group" [Preprint]. Publicado en: Statistical Mechanics. 2024, arXiv:2401.02517, may 2024. 21 h. DOI: 10.48550/arXiv.2401.02517
Aparece en las colecciones: Publicaciones académicas y científicas - Facultad de Ciencias

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