Progress in hadron structure physics on the lattice
arXiv:0711.0819
Abstract
This is a review of progress in hadron structure physics from lattice QCD. Recent results on the structure of the nucleon and the pion in terms of (transition) form factors, moments of distribution amplitudes and (generalized) parton distribution functions are presented. These observables allow us to investigate a number of fundamental physics questions related to e.g. the distribution of charge and momentum in hadrons, the spin structure of the nucleon and the pion, and correlations between spin, orbital angular momentum and coordinate degrees of freedom. Chiral extrapolations of selected lattice results are presented and compared to results from experiment and phenomenology. We conclude that lattice simulations already today strongly contribute to our understanding of the structure of hadrons.
17 pages, 23 figures; Plenary talk at the XXV International Symposium on Lattice Field Theory, July 30 - August 4 2007, Regensburg, Germany
References in corpus (5)
- Chiral Perturbation Theory and the first moments of the Generalized Parton Distriputions in a Nucleon
- Neutron electric polarizability from unquenched lattice QCD using the background field approach
- Gluon contributions to the pion mass and light cone momentum fraction
- Pseudo-scalar meson form factors with maximally twisted Wilson fermions at Nf = 2
- Nucleon and Nucleon to Delta Axial form factors from Lattice QCD