In the large-momentum effective field theory approach to parton physics, the matrix elements of nonlocal operators of quark and gluon fields, linked by straight Wilson lines in a spatial direction, are calculated in lattice quantum chromodynamics as a function of hadron momentum. Using the heavy-quark effective theory formalism, we show a multiplicative renormalization of these operators at all orders in perturbation theory, both in dimensional and lattice regularizations. The result provides a theoretical basis for extracting parton properties through properly renormalized observables in Monte Carlo simulations.
CITATION STYLE
Ji, X., Zhang, J. H., & Zhao, Y. (2018). Renormalization in Large Momentum Effective Theory of Parton Physics. Physical Review Letters, 120(11). https://doi.org/10.1103/PhysRevLett.120.112001
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