A model combining perturbative and non-perturbative QCD is developed to compute high-energy reactions of hadrons and photons and to investigate saturation effects that manifest the S-matrix unitarity. Following a functional integral approach, the S-matrix factorizes into light-cone wave functions and the universal amplitude for the scattering of two color-dipoles which are represented by Wegner-Wilson loops. In the framework of the non-perturbative stochastic vacuum model of QCD supplemented by perturbative gluon exchange, the loop-loop correlation is calculated and related to lattice QCD investigations. With a universal energy dependence motivated by the two-pomeron (soft + hard) picture that respects the unitarity condition in impact para...
One of the most remarkable predictions of the physics of strong interactions, and quantum chromodyna...
Unitarity corrections to the BFKL description of high energy hard scattering are viewed in large N_c...
In this work we study soft high energy reactions in the framework of nonperturbative models. Using a...
A model combining perturbative and non-perturbative QCD is developed to compute high-energy reaction...
We develop a model to compute high-energy reactions of hadrons and photons. The perturbative interac...
We develop a loop-loop correlation model for a unified description of static color dipole potentials...
We compute total and differential elastic cross sections of high-energy hadronic collisions in the l...
Two photon collisions at high energy have an important theoretical advantage: the simplicity of the ...
We review the role of the QCD vacuum structure in the determination of the properties of states and ...
The impact of unitarity is considered in different approaches to saturation in impact-parameter spac...
We review the role of the QCD vacuum structure in the determination of the properties of states and ...
In this series of three lectures, we discuss several aspects of high energy scattering among hadrons...
In a high-energy scattering process with hadrons in the initial state, color is involved. Transverse...
At very high energies we expect that the hadronic cross sections satisfy the Froissart bound, which ...
The nonvanishing of gluonic pole matrix elements can explain the appearance of single spin asymmetri...
One of the most remarkable predictions of the physics of strong interactions, and quantum chromodyna...
Unitarity corrections to the BFKL description of high energy hard scattering are viewed in large N_c...
In this work we study soft high energy reactions in the framework of nonperturbative models. Using a...
A model combining perturbative and non-perturbative QCD is developed to compute high-energy reaction...
We develop a model to compute high-energy reactions of hadrons and photons. The perturbative interac...
We develop a loop-loop correlation model for a unified description of static color dipole potentials...
We compute total and differential elastic cross sections of high-energy hadronic collisions in the l...
Two photon collisions at high energy have an important theoretical advantage: the simplicity of the ...
We review the role of the QCD vacuum structure in the determination of the properties of states and ...
The impact of unitarity is considered in different approaches to saturation in impact-parameter spac...
We review the role of the QCD vacuum structure in the determination of the properties of states and ...
In this series of three lectures, we discuss several aspects of high energy scattering among hadrons...
In a high-energy scattering process with hadrons in the initial state, color is involved. Transverse...
At very high energies we expect that the hadronic cross sections satisfy the Froissart bound, which ...
The nonvanishing of gluonic pole matrix elements can explain the appearance of single spin asymmetri...
One of the most remarkable predictions of the physics of strong interactions, and quantum chromodyna...
Unitarity corrections to the BFKL description of high energy hard scattering are viewed in large N_c...
In this work we study soft high energy reactions in the framework of nonperturbative models. Using a...