3D Structure and Nuclear Targets
arXiv:1510.00794 · doi:10.1140/epja/i2016-16159-1
Abstract
Recent experimental and theoretical ideas are laying the ground for a new era in the knowledge of the parton structure of nuclei. We report on two promising directions beyond inclusive deep inelastic scattering experiments, aimed at, among other goals, unveiling the three dimensional structure of the bound nucleon. The 3D structure in coordinate space can be accessed through deep exclusive processes, whose non-perturbative content is parametrized in terms of generalized parton distributions. In this way the distribution of partons in the transverse plane will be obtained, providing a pictorial view of the realization of the European Muon Collaboration effect. In particular, we show how, through the generalized parton distribution framework, non nucleonic degrees of freedom in nuclei can be unveiled. Analogously, the momentum space 3D structure can be accessed by studying transverse momentum dependent parton distributions in semi-inclusive deep inelastic scattering processes. The status of measurements is also summarized, in particular novel coincidence measurements at high luminosity facilities, such as Jefferson Laboratory. Finally the prospects for the next years at future facilities, such as the 12~GeV Jefferson Laboratory and the Electron Ion Collider, are presented.
12 pages, 14 figures, contribution to the EPJA topical issue on "3D Structure of the Nucleon"
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Cited by in corpus (23)
- GPD phenomenology and DVCS fitting - Entering the high-precision era
- Precision Studies of QCD in the Low Energy Domain of the EIC
- Jets as precision probes in electron-nucleus collisions at the Electron-Ion Collider
- First Exclusive Measurement of Deeply Virtual Compton Scattering off He: Toward the 3D Tomography of Nuclei
- Transversity generalized parton distributions for the deuteron
- Exposing Novel Quark and Gluon Effects in Nuclei
- Exploring the Structure of the Bound Proton with Deeply Virtual Compton Scattering
- Coherent deeply virtual Compton scattering off He
- Data-driven study of timelike Compton scattering
- Light-Front spin-dependent Spectral Function and Nucleon Momentum Distributions for a Three-Body System
- Measurement of deeply virtual Compton scattering off Helium-4 with CLAS at Jefferson Lab
- Single-Transverse-Spin Asymmetries in Exclusive Photo-production of J/psi in Ultra-Peripheral Collisions in the Fixed-Target Mode at the LHC and in the Collider Mode at RHIC
- Catching a glimpse of the parton structure of the bound proton
- Observation of azimuth-dependent suppression of hadron pairs in electron scattering off nuclei
- Final state interactions and the extraction of neutron single spin asymmetries from SIDIS by a transversely polarized He target
- The European Muon Collaboration effect in Light-Front Hamiltonian Dynamics
- Incoherent deeply virtual Compton scattering off He
- Deeply virtual Compton scattering off Helium nuclei with positron beams
- Diffractive two-meson electroproduction with a nucleon and deuteron target
- Generalized parton distributions of light nuclei
- EMC effect, few-nucleon systems and Poincaré covariance
- Three--Dimensional parton structure of light nuclei
- Deeply virtual Compton Scattering off He