Resumming Quark's Longitudinal Momentum Logarithms in LaMET Expansion of Lattice PDFs

ORAL

Abstract

In the large-momentum expansion for parton distribution functions (PDFs), the natural physics scale is the longitudinal momentum (pz) of the quarks (or gluons) in a large-momentum hadron. We show how to expose this scale dependence through resumming logarithms of the type lnn(pz) in the matching coefficient, where μ is a fixed renormalization scale. The result enhances the accuracy of the expansion at moderate pz>1 GeV, and at the same time, clearly shows that the partons cannot be approximated from quarks with pz ~ ΛQCD which are not predominantly collinear with the parent hadron momentum, consistent with power counting of the large-momentum effective theory. The same physics mechanism constrains the coordinate space expansion at large distances z, the conjugate of pz, as illustrated in the example of fitting the moments of the PDFs.

*We thank the BNL/ANL lattice collaboration for sharing their data for this work. This research is supported by the U.S. Department of Energy, Office of Science, Office of Nuclear Physics, under contract number DE-SC0020682. Y.S. is partially supported by the U.S.~Department of Energy, Office of Science, Office of Nuclear Physics, contract no.~DE-AC02-06CH11357. F. Yao and J.-H. Zhang are supported by the National Natural Science Foundation of China under grants No. 11975051 and No. 12061131006. J. Holligan is partially supported by the Center for Frontiers in Nuclear Science at Stony Brook University.

Publication: e-Print: 2209.01236

Presenters

  • Yushan Su

    • University of Maryland, College Park

Authors

  • Yushan Su

    • University of Maryland, College Park
  • Jack Holligan

    • University of Maryland
  • Xiangdong Ji

    • University of Maryland, College Park
  • Fei Yao

    • Beijing Normal University
  • Jian-Hui Zhang

    • The Chinese University of Hong Kong
  • Rui Zhang

    • University of Maryland, College Park