Glimpsing Colour in a World of Black and White
arXiv:1110.4125 · doi:10.1088/1742-6596/381/1/012004
Abstract
The past 40 years have taught us that nucleons are built of constituents that carry colour charges with interactions governed by Quantum Chromodynamics (QCD). How experiments (past, present and future) at Jefferson Lab probe colourless nuclei to map out these internal colour degrees of freedom is presented. When combined with theoretical calculations, these will paint a picture of how the confinement of quarks and gluons, and the structure of the QCD vacuum, determine the properties of all (light) strongly interacting states.
8 pages, 9 figures. Invited talk at the Rutherford Centennial Conference on Nuclear Physics, University of Manchester, 8-12 August 2011. To appear in the Proceedings
References in corpus (8)
- Toward the excited meson spectrum of dynamical QCD
- Dynamical coupled-channel model of meson production reactions in the nucleon resonance region
- Observation of a J^PC = 1-+ exotic resonance in diffractive dissociation of 190 GeV/c pi- into pi- pi- pi+
- Dynamical Coupled-Channel Model of Scattering in the W 2 GeV Nucleon Resonance Region
- Dynamical coupled-channels analysis of 1H(e,e'pi)N reactions
- Extraction of P11 resonances from pi N data
- Double and single pion photoproduction within a dynamical coupled-channels model
- Baryon Resonance Analysis from SAID