English

New determination of $\mathcal{S} \mathcal{T} \langle N| \overline{q} D_{\mu} D_{\nu} q |N \rangle$ based on recent experimental constraints

High Energy Physics - Phenomenology 2015-07-10 v2 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

The symmetric and traceless part of the matrix element STNqDμDνqN\mathcal{S} \mathcal{T} \langle N| \overline{q} D_{\mu} D_{\nu} q |N \rangle can be determined from the second moment of the twist-3 parton distribution function e(x)e(x). Recently, novel experimental data on e(x)e(x) have become available, which enables us to evaluate the magnitude of the above matrix element with considerably reduced systematic uncertainties. Based on the new experimental data, we show that STNqDμDνqN\mathcal{S} \mathcal{T} \langle N| \overline{q} D_{\mu} D_{\nu} q |N \rangle is likely to be at least an order of magnitude smaller than what previous model-based estimates have so far suggested. We discuss the consequences of this observation for the analysis of deep inelastic scattering and QCD sum rules studies at finite density for the vector meson and the nucleon, in which this matrix element is being used as an input parameter.

Keywords

Cite

@article{arxiv.1503.07996,
  title  = {New determination of $\mathcal{S} \mathcal{T} \langle N| \overline{q} D_{\mu} D_{\nu} q |N \rangle$ based on recent experimental constraints},
  author = {Philipp Gubler and Kie Sang Jeong and Su Houng Lee},
  journal= {arXiv preprint arXiv:1503.07996},
  year   = {2015}
}

Comments

22 pages, 4 figures, 4 tables; published version