Determination of c A in three-flavour lattice QCD with Wilson fermions and tree-level improved gauge action

Abstract

We report on an ongoing non-perturbative determination of the improvement coefficient of the axial current, c A, with three flavours of dynamical O(a) improved Wilson quarks and tree-level Symanzik improved gauge action. Our computations are based on simulations with the openQCD code. The improvement condition for a range of couplings is formulated with Schr\"odinger functional boundary conditions and imposed along a line of constant physics in parameter space. Our analysis involves correlation functions with boundary wave functions such that a large sensitivity to c A can be reached by exploiting the PCAC relation with two different pseudoscalar states.

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