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Generalised Amit-Roginsky model from perturbations of 3d quantum gravity

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arxiv 2307.14211 v2 pith:Q4KVPUFY submitted 2023-07-26 hep-th gr-qcmath-phmath.MP

classification hep-thgr-qcmath-phmath.MP
keywords modelamit-roginskyquantumfieldtensorialflatgeneralisedgravity
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A generalised Amit-Roginsky vector model in flat space is obtained as the effective dynamics of pertubations around a classical solution of the Boulatov group field theory for 3d euclidean quantum gravity, extended to include additional matter degrees of freedom. By further restricting the type of perturbations, the original Amit-Roginsky model can be obtained. This result suggests a general link (and possibly a unified framework) between two types of tensorial quantum field theories: quantum geometric group field theories and tensorial models for random geometry, on one hand, and melonic-dominated vector and tensorial models in flat space, such as the Amit-Roginsky model (and the SYK model), on the other hand.

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  1. $F$-extremization determines certain large-$N$ CFTs

    hep-th 2024-12 conditional novelty 7.0 of 10

    Melonic large-N CFTs are exactly the conformal mean field theories that extremize the universal part of the sphere free energy under linear IR marginality constraints.

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