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Long-range multi-scalar models at three loops

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arxiv 2007.04603 v3 pith:X7LJCOW6 submitted 2020-07-09 hep-th cond-mat.stat-mech

classification hep-thcond-mat.stat-mech
keywords modelslong-rangeloopsbetacomputefeynmanfixedfunctions
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We compute the three-loop beta functions of long-range multi-scalar models with general quartic interactions. The long-range nature of the models is encoded in a kinetic term with a Laplacian to the power $0<\zeta<1$, rendering the computation of Feynman diagrams much harder than in the usual short-range case ($\zeta=1$). As a consequence, previous results stopped at two loops, while six-loop results are available for short-range models. We push the renormalization group analysis to three loops, in an $\epsilon=4\zeta-d$ expansion at fixed dimension $d<4$, extensively using the Mellin-Barnes representation of Feynman amplitudes in the Schwinger parametrization. We then specialize the beta functions to various models with different symmetry groups: $O(N)$, $(\mathbb{Z}_2)^N \rtimes S_N$, and $O(N)\times O(M)$. For such models, we compute the fixed points and critical exponents.

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  1. Redundancy Channels in the Conformal Bootstrap

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    Redundant operators motivate spectral gaps that block accidental symmetry enhancement, yielding the first bootstrap island for the 3D cubic CFT that excludes the O(3) model.

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