English

On the contribution of twist-3 multi-gluon correlation functions to single transverse-spin asymmetry in SIDIS

High Energy Physics - Phenomenology 2015-05-20 v1

Abstract

We study the single spin asymmetry (SSA) induced by purely gluonic correlation inside a nucleon, in particular, by the three-gluon correlation functions in the transversely polarized nucleon, pp^\uparrow. This contribution is embodied as a twist-3 mechanism in the collinear factorization framework and controls the SSA to be observed in the DD-meson production with large transverse-momentum in semi-inclusive DIS (SIDIS), epeDXep^\uparrow \rightarrow eDX. We define the relevant three-gluon correlation functions in the nucleon, and determine their complete set at the twsit-3 level taking into account symmetry constraints in QCD. We derive the single-spin-dependent cross section for the DD-meson production in SIDIS, taking into account all the relevant contributions at the twist-3 level. The result is obtained in a manifestly gauge-invariant form as the factorization formula in terms of the three-gluon correlation functions and reveals the five independent structures with respect to the dependence on the azimuthal angle for the produced DD meson. We also demonstrate the remarkable relation between the twist-3 single-spin-dependent cross section and twist-2 cross sections for the DD-meson production, as a manifestation of universal structure behind the SSA in a variety of hard processes.

Keywords

Cite

@article{arxiv.1012.2220,
  title  = {On the contribution of twist-3 multi-gluon correlation functions to single transverse-spin asymmetry in SIDIS},
  author = {Hiroo Beppu and Yuji Koike and Kazuhiro Tanaka and Shinsuke Yoshida},
  journal= {arXiv preprint arXiv:1012.2220},
  year   = {2015}
}

Comments

8 pages, 2 figures. To appear in the proceedings of the 19th International Spin Physics Symposium (SPIN2010), Juelich, Germany, Sept.27 - Oct.2, 2010