Badel, GilCuomo, GabrielMonin, AlexanderRattazzi, Riccardo2020-04-112020-04-112020-04-112020-03-1010.1016/j.physletb.2020.135202https://infoscience.epfl.ch/handle/20.500.14299/168115WOS:000515091400028In arXiv:1909.01269 it was shown that the scaling dimension of the lightest charge n operator in the U (1) model at the Wilson-Fisher fixed point in D = 4 - epsilon can be computed semiclassically for arbitrary values of lambda n, where lambda is the perturbatively small fixed point coupling. Here we generalize this result to the fixed point of the U (1) model in 3 - epsilon dimensions. The result interpolates continuously between diagrammatic calculations and the universal conformal superfluid regime for CFTs at large charge. In particular it reproduces the expectedly universal O(n(0)) contribution to the scaling dimension of large charge operators in 3D CFTs. (C) 2020 Published by Elsevier B.V.Astronomy & AstrophysicsPhysics, NuclearPhysics, Particles & FieldsAstronomy & AstrophysicsPhysicsFeynman diagrams and the large charge expansion in 3-epsilon dimensionstext::journal::journal article::research article