English

Single-nucleon experiments

Nuclear Experiment 2014-11-20 v1

Abstract

We discuss the Jefferson Lab low momentum transfer data on moments of the nucleon spin structure functions g1g_1 and g2g_2 and on single charged pion electroproduction off polarized proton and polarized neutron. A wealth of data is now available, while more is being analyzed or expected to be taken in the upcoming years. Given the low momentum transfer selected by the experiments, these data can be compared to calculations from Chiral Perturbation theory, the effective theory of strong force that should describe it at low momentum transfer. The data on various moments and the respective calculations do not consistently agree. In particular, experimental data for higher moments disagree with the calculations.The absence of contribution from the Δ\Delta resonance in the various observables was expected to facilitate the calculations and hence make the theory predictions either more robust or valid over a larger Q2Q^2 range. Such expectation is verified only for the Bjorken sum, but not for other observables in which the Δ\Delta is suppressed. Preliminary results on pion electroproduction off polarized nucleons are also presented and compared to phenomenological models for which contributions from different resonances are varied. Chiral Perturbation calculations of these observables, while not yet available, would be valuable and, together with these data, would provide an extensive test of the effective theory.

Keywords

Cite

@article{arxiv.0910.1751,
  title  = {Single-nucleon experiments},
  author = {Alexandre Deur},
  journal= {arXiv preprint arXiv:0910.1751},
  year   = {2014}
}

Comments

Proceedings for plenary talk given at the 6th International Workshop on Chiral Dynamics, July 2009. To appear in the Proceedings of Science

R2 v1 2026-06-21T13:56:20.240Z