Nonperturbative Renormalization of Operators in Near-Conformal Systems Using Gradient Flows
arXiv:1806.01385 · doi:10.1103/PhysRevLett.121.201601
Abstract
We propose a continuous real space renormalization group transformation based on gradient flow, allowing for a numerical study of renormalization without the need for costly ensemble matching. We apply our technique in a pilot study of SU gauge theory with fermions in the fundamental representation, finding the mass anomalous dimension to be , consistent with other perturbative and lattice estimates. We also present the first lattice calculation of the nucleon anomalous dimension in this theory, finding .
5 pages, 3 figures. v2: updated references, edited derivation for clarity. v3: updated to published version
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