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Perturbation theory vs. simulation for tadpole improvement factors in pure gauge theories

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arxiv hep-lat/0402033 v1 pith:IVXZUZHV submitted 2004-02-25 hep-lat

classification hep-lat
keywords gaugelatticeloopperturbationtheoryacceleratedfactorsimproved
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We calculate the mean link in Landau gauge for Wilson and improved SU(3) anisotropic gauge actions, using two loop perturbation theory and Monte Carlo simulation employing an accelerated Langevin algorithm. Twisted boundary conditions are employed, with a twist in all four lattice directions considerably improving the (Fourier accelerated) convergence to an improved lattice Landau gauge. Two loop perturbation theory is seen to predict the mean link extremely well even into the region of commonly simulated gauge couplings and so can be used remove the need for numerical tuning of self-consistent tadpole improvement factors. A three loop perturbative coefficient is inferred from the simulations and is found to be small. We show that finite size effects are small and argue likewise for (lattice) Gribov copies and double Dirac sheets.

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  1. Renormalising vector currents in lattice QCD using momentum-subtraction schemes

    hep-lat 2019-09 accept novelty 6.0 of 10

    Z_V for HISQ vector currents is exact and condensate-free in RI-SMOM and in a modified ratio scheme, but the standard RI'-MOM scheme has O(1%) condensate contamination.

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