English

Aspects of Hadron Physics

Nuclear Theory 2010-03-04 v1

Abstract

Detailed investigations of the structure of hadrons are essential for understanding how matter is constructed from the quarks and gluons of Quantum chromodynamics (QCD), and amongst the questions posed to modern hadron physics, three stand out. What is the rigorous, quantitative mechanism responsible for confinement? What is the connection between confinement and dynamical chiral symmetry breaking? And are these phenomena together sufficient to explain the origin of more than 98% of the mass of the observable universe? Such questions may only be answered using the full machinery of nonperturbative relativistic quantum field theory. This contribution provides a perspective on progress toward answering these key questions. In so doing it will provide an overview of the contemporary application of Dyson-Schwinger equations in Hadron Physics. The presentation assumes that the reader is familiar with the concepts and notation of relativistic quantum mechanics, with the functional integral formulation of quantum field theory and with regularisation and renormalisation in its perturbative formulation.

Keywords

Cite

@article{arxiv.0802.0217,
  title  = {Aspects of Hadron Physics},
  author = {C. D. Roberts and M. S. Bhagwat and S. V. Wright and A. Holl},
  journal= {arXiv preprint arXiv:0802.0217},
  year   = {2010}
}

Comments

64 pages and numerous figures. Published in "Hadron Structure and Nonperturbative QCD", the proceedings of the 44th Winter School on Theoretical Physics (IUTP 44) Schladming, Austria: 11-18 March, 2006

R2 v1 2026-06-21T10:08:52.739Z