arXiv:1806.10932·v2·High Energy Physics — Phenomenology
The twist-three distribution in a light-front model
B. Pasquini (1, 2)🇮🇹 · S. Rodini (1, 2) ((1) Pavia U., (2) INFN, Pavia)🇮🇹
Abstract
We discuss the twist-three, unpolarized, chiral-odd, transverse momentum dependent parton distribution (TMD) within a light-front model. We review a model-independent decomposition of this TMD, which follows from the QCD equations of motion and is given in terms of a leading-twist mass term, a pure interaction-dependent contribution, and singular terms. The leading-twist and pure twist-three terms are represented in terms of overlap of light-front wave functions (LFWFs), taking into account the Fock states with three valence quark () and three-quark plus one gluon (). The and LFWFs with total orbital angular momentum zero are modeled using a parametrization derived from the conformal expansion of the proton distribution amplitudes, with parameters fitted to reproduce available phenomenological information on the unpolarized leading-twist quark and gluon collinear parton distributions. Numerical predictions for both the quark TMD and the collinear parton distribution are presented, discussing the role of the quark-gluon correlations in the proton.
Comments: 15 pages; 5 figures; 2 tables