arXiv:1511.05024·v2·High Energy Physics — Lattice
Non-perturbative renormalization of tensor bilinears in Schrödinger Functional schemes
Patrick Fritzsch🇪🇸 · Carlos Pena🇪🇸 · David Preti🇪🇸
Abstract
We present preliminary result for the study of the renormalization group evolution of tensor bilinears in Schrödinger Functional (SF) schemes for and QCD with non-perturbatively -improved Wilson fermions. First results (proceeding in parallel with the ongoing computation of the running quark masses [1] are also discussed. A one-loop perturbative calculation of the discretisation effects for the relevant step scaling functions has been carried out for both Wilson and -improved actions and for a large number of lattice resolutions. We also calculate the two-loop anomalous dimension in SF schemes for tensor currents through a scheme matching procedure with RI and . Thanks to the SF iterative procedure the non-perturbative running over two orders of magnitude in energy scales, as well as the corresponding Renormalization Group Invariant operators, have been determined.
Comments: 7 pages, 4 figures. Proceedings of the 33rd International Symposium on Lattice Field Theory, 14-18 July 2015, Kobe, Japan