English

Emergent phenomena and partonic structure in hadrons

Nuclear Theory 2017-04-05 v1 High Energy Physics - Lattice High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Modern facilities are poised to tackle fundamental questions within the Standard Model, aiming to reveal the nature of confinement, its relationship to dynamical chiral symmetry breaking (DCSB) - the origin of visible mass - and the connection between these two, key emergent phenomena. There is strong evidence to suggest that they are intimately connected with the appearance of momentum-dependent masses for gluons and quarks in QCD, which are large in the infrared: mg500m_g \sim 500\,MeV and Mq350M_q\sim 350\,MeV. DCSB, expressed in the dynamical generation of a dressed-quark mass, has an enormous variety of verifiable consequences, including an enigmatic result that the properties of the (almost) massless pion are the cleanest expression of the mechanism which is responsible for almost all the visible mass in the Universe. This contribution explains that these emergent phenomena are expressed with particular force in the partonic structure of hadrons, e.g. in valence-quark parton distribution amplitudes and functions, and, consequently, in numerous hadronic observables, so that we are now in a position to exhibit the consequences of confinement and DCSB in a wide range of hadron observables, opening the way to empirical verification of their expression in the Standard Model.

Keywords

Cite

@article{arxiv.1611.09863,
  title  = {Emergent phenomena and partonic structure in hadrons},
  author = {Craig D. Roberts and Cedric Mezrag},
  journal= {arXiv preprint arXiv:1611.09863},
  year   = {2017}
}

Comments

12 pages, 2 figures. Contribution to the proceedings of XIIth Quark Confinement and the Hadron Spectrum, 29 August 2016 - 3 September 2016, Thessaloniki, Greece. arXiv admin note: text overlap with arXiv:1606.03909

R2 v1 2026-06-22T17:08:37.342Z