We present results for the renormalization of gauge invariant nonlocal fermion operators which contain a Wilson line, to one loop level in lattice perturbation theory. Our calculations have been performed for Wilson/clover fermions and a wide class of Symanzik improved gluon actions. The extended nature of such ‘long-link’ operators results in a nontrivial renormalization, including contributions which diverge linearly as well as logarithmically with the lattice spacing, along with additional finite factors. We present nonperturbative prescriptions to extract the linearly divergent contributions
The consideration of quantum fields defined on a spacetime lattice provides computational techniques...
We present an exploratory study of a gauge-invariant non-perturbative renormalization technique. The...
We discuss the improvement of flavour non-singlet point and one-link lattice quark operators, which ...
We present results for the renormalization of gauge invariant nonlocal fermion operators which conta...
Nonlocal quark bilinear operators connected by link paths are used for studying parton distribution ...
AbstractWe present the first numerical implementation of a non-perturbative renormalization method f...
We present the first numerical implementation of a non-perturbative renormalization method for latti...
Quasi-PDFs provide a path toward an ab initio calculation of parton distribution functions (PDFs) us...
Quasi-PDFs provide a path toward an ab initio calculation of parton distribution functions (PDFs) us...
We present the results of an extensive lattice calculation of the renormalization constants of bilin...
We present the results of an extensive lattice calculation of the renormalization constants of bilin...
In the large-momentum effective field theory approach to parton physics, the matrix elements of nonl...
The renormalization factors of local quark-bilinear operators are computed nonperturbatively for Nf=...
Numerical Stochastic Perturbation Theory was able to get three- (and even four-) loop results for fi...
© 2020 authors. Published by the American Physical Society. Quark bilinear operators with staple-sha...
The consideration of quantum fields defined on a spacetime lattice provides computational techniques...
We present an exploratory study of a gauge-invariant non-perturbative renormalization technique. The...
We discuss the improvement of flavour non-singlet point and one-link lattice quark operators, which ...
We present results for the renormalization of gauge invariant nonlocal fermion operators which conta...
Nonlocal quark bilinear operators connected by link paths are used for studying parton distribution ...
AbstractWe present the first numerical implementation of a non-perturbative renormalization method f...
We present the first numerical implementation of a non-perturbative renormalization method for latti...
Quasi-PDFs provide a path toward an ab initio calculation of parton distribution functions (PDFs) us...
Quasi-PDFs provide a path toward an ab initio calculation of parton distribution functions (PDFs) us...
We present the results of an extensive lattice calculation of the renormalization constants of bilin...
We present the results of an extensive lattice calculation of the renormalization constants of bilin...
In the large-momentum effective field theory approach to parton physics, the matrix elements of nonl...
The renormalization factors of local quark-bilinear operators are computed nonperturbatively for Nf=...
Numerical Stochastic Perturbation Theory was able to get three- (and even four-) loop results for fi...
© 2020 authors. Published by the American Physical Society. Quark bilinear operators with staple-sha...
The consideration of quantum fields defined on a spacetime lattice provides computational techniques...
We present an exploratory study of a gauge-invariant non-perturbative renormalization technique. The...
We discuss the improvement of flavour non-singlet point and one-link lattice quark operators, which ...