Nucleon tomography. What can we do better today than Rutherford 100 years ago?
arXiv:1612.03077 · doi:10.1051/epjconf/201713701003
Abstract
A survey is presented on the current status of 3D nucleon tomography. Several research frontiers are addressed that dominate modern physics from theory to current and future experiments. We have now a much more detailed spatial image of the nucleon thanks to various theoretical concepts and methods to describe its charge distribution and spin decomposition which are highlighted here. The progress of lattice computations of these quantities is reported and the prospects of what we can come to expect in the near future are discussed. Multi-dimensional maps of the nucleon's partonic structure appear now within reach of forthcoming experiments.
Based on the Plenary Round Table at XII Quark Confinement and the Hadron Spectrum, 29 August - 3 September, 2016, Thessaloniki, Greece, 32 pages, 1 Table 17 Figures (embedded as pdf). arXiv admin note: text overlap with arXiv:1208.1244
References in corpus (14)
- Ab initio calculation of the neutron-proton mass difference
- The Zero-Bin and Mode Factorization in Quantum Field Theory
- Sivers Effect for Pion and Kaon Production in Semi-Inclusive Deep Inelastic Scattering
- Measurement of gamma gamma* --> pi0 transition form factor at Belle
- A Lattice Calculation of Parton Distributions
- Soft-/rapidity- anomalous dimensions correspondence
- Wilson lines and transverse-momentum dependent parton distribution functions: A renormalization-group analysis
- The RHIC SPIN Program: Achievements and Future Opportunities
- Renormalization, Wilson lines, and transverse-momentum dependent parton distribution functions
- Comparing antithetic trends of data for the pion-photon transition form factor
- On timelike and spacelike deeply virtual Compton scattering at next to leading order
- Singular and Regular Gauges in Soft Collinear Effective Theory: The Introduction of the New Wilson Line T
- SCET, Light-Cone Gauge and the T-Wilson Lines
- Soft factors for double parton scattering at NNLO