Unpolarized isovector quark distribution function from lattice QCD: a systematic analysis of renormalization and matching
Author(s)
Liu, Yu-Sheng; Chen, Jiunn-Wei; Huo, Yi-Kai; Jin, Luchang; Schlemmer, Maximilian; Schäfer, Andreas; Sun, Peng; Wang, Wei; Yang, Yi-Bo; Zhang, Jian-Hui; Zhang, Qi-An; Zhang, Kuan; Zhao, Yong; Lattice Parton Collaboration; ... Show more Show less
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We present a detailed lattice QCD study of the unpolarized isovector quark parton distribution function (PDF) using a large-momentum effective theory framework. We choose a quasi-PDF defined by a spatial correlator which is free from mixing with other operators of the same dimension. In the lattice simulation, we use a Gaussian-momentum-smeared source at M[subscript p]=356 MeV and P[subscript z]∈{1.8,2.3} GeV. To control the systematics associated with the excited states, we explore five different source-sink separations. The nonperturbative renormalization is conducted in a regularization-independent momentum subtraction scheme, and the matching between the renormalized quasi-PDF and [line over MS] PDF is calculated based on perturbative QCD up to one-loop order. Systematic errors due to renormalization and perturbative matching are also analyzed in detail. Our results for light-cone PDF are in reasonable agreement with the latest phenomenological analysis. ©2020
Description
Lattice Parton Collaboration (Liu, Yu-Sheng, et al.), "Unpolarized isovector quark distribution function from lattice QCD: a systematic analysis of renormalization and matching." Physical Review D 101 (Feb. 2020): no. 034020 doi 10.1103/PhysRevD.101.034020 ©2020 Author(s)
Date issued
2020-02-18Department
Massachusetts Institute of Technology. Center for Theoretical PhysicsJournal
Physical Review D
Publisher
American Physical Society
Citation
Liu, Yu-Sheng, Chen, Jiunn-Wei, Huo, Yi-Kai, Jin, Luchang, Schlemmer, Maximilian et al. 2020. "Unpolarized isovector quark distribution function from lattice QCD: a systematic analysis of renormalization and matching." Physical Review D, 101.
Version: Final published version
ISSN
2470-0029
2470-0010
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