Rank-d tensorial group field theories are quantum field theories (QFTs) defined on a group manifold G×d, which represent a nonlocal generalization of standard QFT and a candidate formalism for quantum gravity, since, when endowed with appropriate data, they can be interpreted as defining a field theoretic description of the fundamental building blocks of quantum spacetime. Their renormalization analysis is crucial both for establishing their consistency as quantum field theories and for studying the emergence of continuum spacetime and geometry from them. In this paper, we study the renormalization group flow of two simple classes of tensorial group field theories (TGFTs), defined for the group G=R for arbitrary rank, both without and with gauge invariance conditions, by means of functional renormalization group techniques. The issue of IR divergences is tackled by the definition of a proper thermodynamic limit for TGFTs. We map the phase diagram of such models, in a simple truncation, and identify both UV and IR fixed points of the RG flow. Encouragingly, for all the models we study, we find evidence for the existence of a phase transition of condensation type.

Geloun, J.B., Martini, R., Oriti, D. (2016). Functional renormalization group analysis of tensorial group field theories on Rd. PHYSICAL REVIEW D, 94(2), 1-45 [10.1103/PhysRevD.94.024017].

Functional renormalization group analysis of tensorial group field theories on Rd

Martini R.;
2016

Abstract

Rank-d tensorial group field theories are quantum field theories (QFTs) defined on a group manifold G×d, which represent a nonlocal generalization of standard QFT and a candidate formalism for quantum gravity, since, when endowed with appropriate data, they can be interpreted as defining a field theoretic description of the fundamental building blocks of quantum spacetime. Their renormalization analysis is crucial both for establishing their consistency as quantum field theories and for studying the emergence of continuum spacetime and geometry from them. In this paper, we study the renormalization group flow of two simple classes of tensorial group field theories (TGFTs), defined for the group G=R for arbitrary rank, both without and with gauge invariance conditions, by means of functional renormalization group techniques. The issue of IR divergences is tackled by the definition of a proper thermodynamic limit for TGFTs. We map the phase diagram of such models, in a simple truncation, and identify both UV and IR fixed points of the RG flow. Encouragingly, for all the models we study, we find evidence for the existence of a phase transition of condensation type.
2016
Geloun, J.B., Martini, R., Oriti, D. (2016). Functional renormalization group analysis of tensorial group field theories on Rd. PHYSICAL REVIEW D, 94(2), 1-45 [10.1103/PhysRevD.94.024017].
Geloun, J. B.; Martini, R.; Oriti, D.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1009978
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