English

Lattice QCD exploration of pseudo-PDFs

High Energy Physics - Phenomenology 2017-10-30 v4 High Energy Physics - Lattice

Abstract

We demonstrate a new method of extracting parton distributions from lattice calculations. The starting idea is to treat the generic equal-time matrix element M(Pz3,z32){\cal M} (Pz_3, z_3^2) as a function of the Ioffe time ν=Pz3\nu = Pz_3 and the distance z3z_3. The next step is to divide M(Pz3,z32){\cal M} (Pz_3, z_3^2) by the rest-frame density M(0,z32){\cal M} (0, z_3^2). Our lattice calculation shows a linear exponential z3z_3-dependence in the rest-frame function, expected from the Z(z32)Z(z_3^2) factor generated by the gauge link. Still, we observe that the ratio M(Pz3,z32)/M(0,z32){\cal M} (Pz_3 , z_3^2)/{\cal M} (0, z_3^2) has a Gaussian-type behavior with respect to z3z_3 for 6 values of PP used in the calculation. This means that Z(z32)Z(z_3^2) factor was canceled in the ratio. When plotted as a function of ν\nu and z3z_3, the data are very close to z3z_3-independent functions. This phenomenon corresponds to factorization of the xx- and kk_\perp-dependence for the TMD F(x,k2){\cal F} (x, k_\perp^2). For small z34az_3 \leq 4a, the residual z3z_3-dependence is explained by perturbative evolution, with αs/π=0.1\alpha_s/\pi =0.1.

Keywords

Cite

@article{arxiv.1706.05373,
  title  = {Lattice QCD exploration of pseudo-PDFs},
  author = {Kostas Orginos and Anatoly Radyushkin and Joseph Karpie and Savvas Zafeiropoulos},
  journal= {arXiv preprint arXiv:1706.05373},
  year   = {2017}
}

Comments

12 pages, 18 figures, to appear in Phys. Rev. D