SPIN Effects, QCD, and Jefferson Laboratory with 12 GeV electrons
arXiv:1301.4940 · doi:10.1134/S1063779613060191
Abstract
QCD and Spin physics are playing important role in our understanding of hadron structure. I will give a short overview of origin of hadron structure in QCD and highlight modern understanding of the subject. Jefferson Laboratory is undergoing an upgrade that will increase the energy of electron beam up to 12 GeV. JLab is one of the leading facilities in nuclear physics studies and once operational in 2015 JLab 12 will be crucial for future of nuclear physics. I will briefly discuss future studies in four experimental halls of Jefferson Lab.
Summary of two plenary talks at SPIN 2012, Dubna, Russia. Expanded reference list
References in corpus (15)
- Observation of an anomalous positron abundance in the cosmic radiation
- Secluded U(1) below the weak scale
- Physics Opportunities with the 12 GeV Upgrade at Jefferson Lab
- Sivers Effect for Pion and Kaon Production in Semi-Inclusive Deep Inelastic Scattering
- Matches and mismatches in the descriptions of semi-inclusive processes at low and high transverse momentum
- A Unified Picture for Single Transverse-Spin Asymmetries in Hard Processes
- Single transverse-spin asymmetry in high transverse momentum pion production in pp collisions
- Forward Neutral Pion Transverse Single Spin Asymmetries in p+p Collisions at \sqrt{s}=200 GeV
- An Observation Concerning the Process Dependence of the Sivers Functions
- Evolution of twist-3 multi-parton correlation functions relevant to single transverse-spin asymmetry
- Next-to-leading Order Calculation of the Single Transverse Spin Asymmetry in the Drell-Yan Process
- QCD Evolution of the Transverse Momentum Dependent Correlations
- A phenomenological study of single transverse-spin asymmetry for inclusive light-hadron productions at RHIC
- QCD evolution of naive-time-reversal-odd parton distribution functions
- On the Relation Between Mechanisms for Single-Transverse-Spin Asymmetries