English

Double Collins effect in $e^+ e^-\to\Lambda \bar\Lambda X$ process in a diquark spectator model

High Energy Physics - Phenomenology 2018-06-20 v1 High Energy Physics - Experiment

Abstract

We study the Collins function H1H^\perp_{1} of the Λ\Lambda hyperon, which describes the fragmentation of a transversely polarized quark into an unpolarized Λ\Lambda hyperon. We calculate H1H^\perp_{1} for light quarks of the Λ\Lambda hyperon, in the diquark spectator model with a Gaussian form factor for the hyperon-quark-diquark vertex. The model calculation includes contributions from both the scalar diquark and vector diquark spectators. Using the model result, we estimate the weighted cos2ϕ0\cos2\phi_0 asymmetry in the process e+eΛΛˉXe^+e^- \to \Lambda\bar{\Lambda}X contributed by the coupling of two Collins functions. The QCD evolution effects for the first kTk_T-moment of the Collins function and the unpolarized fragmentation function D1(z)D_1(z) are also included. The results show that asymmetry is sizable and measurable at the kinematical configurations of Belle and BaBar experiments. We also find that the evolution effects play an important role in the phenomenological analysis.

Keywords

Cite

@article{arxiv.1802.01843,
  title  = {Double Collins effect in $e^+ e^-\to\Lambda \bar\Lambda X$ process in a diquark spectator model},
  author = {Xiaoyu Wang and Yongliang Yang and Zhun Lu},
  journal= {arXiv preprint arXiv:1802.01843},
  year   = {2018}
}

Comments

11 pages, 5 figures