Phase transitions in tensorial group field theories: Landau-Ginzburg analysis of models with both local and non-local degrees of freedomOpen Access

Marchetti L, Oriti D, Pithis A, Thürigen J

Research article (journal) | Peer reviewed

Abstract

In the tensorial group field theory approach to quantum gravity, the theory is based on discrete building blocks and continuum spacetime is expected to emerge from their collective dynamics, possibly at criticality, via a phase transition. On a compact group of fixed volume this can be expected to be only possible in a large-volume or thermodynamic limit. Here we show how phase transitions are possible in TGFTs in two cases: a) considering the non-local group degrees of freedom on a non-compact Lie group instead of a compact one (or taking a large-volume limit of a compact group); b) in models including R-valued local degrees of freedom (that can be interpreted as discrete scalar fields, often used in this context to provide a matter reference frame). After adapting the Landau-Ginzburg approach to this setting of mixed local/non-local degrees of freedom, we determine the critical dimension beyond which there is a Gaussian fixed point and a continuous phase transition which can be described by mean-field theory. This is an important step towards the realization of a phase transition to continuum spacetime in realistic TGFT models for quantum gravity.

Details about the publication

Volume12 (2021)
StatusPublished
Release year2021
Language in which the publication is writtenEnglish

Authors from the University of Münster

Thürigen, Johannes

Projects the publication originates from

Duration: 01/06/2019 - 12/08/2022 | 1st Funding period
Funded by: DFG - Individual Grants Programme
Type of project: Individual project