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Renormalisation and off-shell improvement in lattice perturbation theory

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arxiv hep-lat/0007004 v1 pith:TG7ESEQ3 submitted 2000-07-05 hep-lat

classification hep-lat
keywords improvementfermionslatticecloveroff-shellfirstoperatorsorder
verification ladder T0 review T1 audit T2 compute T3 formal
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We discuss the improvement of flavour non-singlet point and one-link lattice quark operators, which describe the quark currents and the first moment of the DIS structure functions respectively. Suitable bases of improved operators are given, and the corresponding renormalisation factors and improvement coefficients are calculated in one-loop lattice perturbation theory, using the Sheikholeslami-Wohlert (clover) action. To this order we achieve off-shell improvement by eliminating the effect of contact terms. We use massive fermions, and our calculations are done keeping all terms up to first order in the lattice spacing, for arbitrary m^2/p^2, in a general covariant gauge. We also compare clover fermions with fermions satisfying the Ginsparg-Wilson relation, and show how to remove O(a) effects off-shell in this case too, and how this is in many aspects simpler than for clover fermions. Finally, tadpole improvement is also considered.

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  1. Logarithmic corrections to O($a^2$) effects in lattice QCD with unrooted Staggered quarks

    hep-lat 2025-01 conditional novelty 7.0 of 10

    Spectral lattice artifacts for unrooted staggered quarks scale as a^2 [2 b0 gbar^2(1/a)]^gamma, with the smallest exponents near -0.3 for N_f=0,4 and near -0.9 and -2.6 for N_f=8,12.

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