English

The nucleon spin and momentum decomposition using lattice QCD simulations

High Energy Physics - Lattice 2017-11-21 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment Nuclear Theory

Abstract

We determine within lattice QCD, the nucleon spin carried by valence and sea quarks, and gluons. The calculation is performed using an ensemble of gauge configurations with two degenerate light quarks with mass fixed to approximately reproduce the physical pion mass. We find that the total angular momentum carried by the quarks in the nucleon is Ju+d+s=0.408(61)stat.(48)syst.J_{u+d+s}{=}0.408(61)_{\rm stat.}(48)_{\rm syst.} and the gluon contribution is Jg=0.133(11)stat.(14)syst.J_g {=}0.133(11)_{\rm stat.}(14)_{\rm syst.} giving a total of JN=0.54(6)stat.(5)syst.J_N{=}0.54(6)_{\rm stat.}(5)_{\rm syst.} consistent with the spin sum. For the quark intrinsic spin contribution we obtain 12ΔΣu+d+s=0.201(17)stat.(5)syst.\frac{1}{2}\Delta \Sigma_{u+d+s}{=}0.201(17)_{\rm stat.}(5)_{\rm syst.}. All quantities are given in the MS\overline{\textrm{MS}} scheme at 2~GeV. The quark and gluon momentum fractions are also computed and add up to xu+d+s+xg=0.804(121)stat.(95)syst.+0.267(12)stat.(10)syst.=1.07(12)stat.(10)syst.\langle x\rangle_{u+d+s}+\langle x\rangle_g{=}0.804(121)_{\rm stat.}(95)_{\rm syst.}+0.267(12)_{\rm stat.}(10)_{\rm syst.}{=}1.07(12)_{\rm stat.}(10)_{\rm syst.} satisfying the momentum sum.

Keywords

Cite

@article{arxiv.1706.02973,
  title  = {The nucleon spin and momentum decomposition using lattice QCD simulations},
  author = {C. Alexandrou and M. Constantinou and K. Hadjiyiannakou and K. Jansen and C. Kallidonis and G. Koutsou and A. Vaquero Avilés-Casco and C. Wiese},
  journal= {arXiv preprint arXiv:1706.02973},
  year   = {2017}
}

Comments

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R2 v1 2026-06-22T20:14:07.232Z