Saturation at low $x$
E. Levin
Abstract
Open-access reader
E. Levin
Abstract
Open-access reader
This talk is an attempt to review all our knowledge on saturation at low $x$ both theoretical and experimental, to stimulate a search for saturation effects at THERA. The main goals of this presentation are 1. To discuss an intuitive picture of the deep inelastic scattering that leads to the saturation of the parton densities; 2. To show that the saturation hypothesis has solid theoretical proof; 3. To report on the theoretical progress that has been made over the past two years in high parton density QCD, and on the property of the saturation phase that emerges from the theory that has been developed; 4. To collect all that we know theoretically and experimentally about the saturation scale $Q_s(x)$ .
OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This talk is an attempt to review all our knowledge on saturation at low $x$ both theoretical and experimental, to stimulate a search for saturation effects at THERA. The main goals of this presentation are 1. To discuss an intuitive picture of the deep inelastic scattering that leads to the saturation of the parton densities; 2. To show that the saturation hypothesis has solid theoretical proof; 3. To report on the theoretical progress that has been made over the past two years in high parton density QCD, and on the property of the saturation phase that emerges from the theory that has been developed; 4. To collect all that we know theoretically and experimentally about the saturation scale $Q_s(x)$ .
Key concepts: Saturation (graph theory), Parton, Scattering, Physics, Quantum chromodynamics, Condensed matter physics, Statistical physics, Particle physics