English

Quasi-PDFs and pseudo-PDFs

High Energy Physics - Phenomenology 2017-11-17 v1 High Energy Physics - Lattice

Abstract

We discuss the physical nature of quasi-PDFs, especially the reasons for the strong nonperturbative evolution pattern which they reveal in actual lattice gauge calculations. We argue that quasi-PDFs may be treated as hybrids of PDFs and the rest-frame momentum distributions of partons. The latter is also responsible for the transverse momentum dependence of TMDs. The resulting convolution structure of quasi-PDFs necessitates using large probing momenta p33p_3 \gtrsim 3 GeV to get reasonably close to the PDF limit. To deconvolute the rest-frame distribution effects, we propose to use a method based directly on the coordinate representation. We treat matrix elements M(z3,p3)M(z_3,p_3) as distributions M(ν,z32){\cal M} (\nu, z_3^2) depending on the Ioffe-time ν=p3z3\nu = p_3 z_3 and the distance parameter z32z_3^2. The rest-frame spatial distribution is given by M(0,z32){\cal M} (0, z_3^2). Using the reduced Ioffe function M(ν,z32)M(ν,z32)/M(0,z32){\mathfrak M} (\nu, z_3^2) \equiv {\cal M} (\nu, z_3^2)/ {\cal M} (0, z_3^2) we divide out the rest frame effects,including the notorious link renormalization factors. The ν\nu-dependence remains intact and determines the shape of PDFs in the small z3z_3 region. The residual z32z_3^2 dependence of the M(ν,z32){\mathfrak M} (\nu, z_3^2) is governed by perturbative evolution. The Fourier transform of M(ν,z32){\cal M} (\nu, z_3^2) produces pseudo-PDFs P(x,z32){\cal P}(x, z_3^2) that generalize the light-front PDFs onto spacelike intervals. On the basis of these findings we propose a new method for extraction of PDFs from lattice calculations.

Keywords

Cite

@article{arxiv.1711.06031,
  title  = {Quasi-PDFs and pseudo-PDFs},
  author = {Anatoly Radyushkin},
  journal= {arXiv preprint arXiv:1711.06031},
  year   = {2017}
}

Comments

11 pages, Talk at QCD Evolution 2017 Workshop

R2 v1 2026-06-22T22:48:02.099Z