This is a draft describing the calculation of the evolution of the gluon density in $x$ from an initial value $x=x_{0}=0.01$ to smaller values, up to $x=10^{-8}$ in the hard pomeron formalism with a running coupling introduced on the basis of the bootstrap equation. The obtained gluon density is used to calculate the singlet part of the proton structure function. Comparison with experiment and the results following from the fixed coupling evolution is made
We show that the previously introduced CKMT model, based on conventional Regge theory, gives a good ...
The Glauber approach to the gluon density in a nucleus, suggested by A. Mueller, is developed and st...
Employing the representation of the experimental data on deep inelastic electron-proton scattering (...
We derive the complete Wilson renormalization group equation which governs the evolution of the gluo...
The Glauber approach to the gluon density in a nucleus, suggested by A. Mueller, is developed and st...
The BFKL and the unified angular-ordered equations are solved to determine the gluon distribution at...
Gluon distribution function at small x is computed using the extended McLerran-Venugopalan model. A ...
The behavior of gluon distributions in the small- x region are semi-numerically predicted by using t...
AbstractThe gluon distribution is dominated by the hard pomeron at small x and all Q2, with no soft-...
I discuss some of the basic techniques and results of soft gluon resummation, and their applications...
We present an analysis of the current methods of approximate determination of the gluon density $G(x...
A main feature of high-energy scattering in QCD is saturation in the number density of gluons. This ...
We employ a set of recent, theoretically motivated fits to nonperturbative unquenched gluon propagat...
We show that the saturation exponent is more effective than the hard pomeron exponent in the nonline...
We show estimates for shadowing of gluons at small values of $x$, appropriate to RHIC and LHC experi...
We show that the previously introduced CKMT model, based on conventional Regge theory, gives a good ...
The Glauber approach to the gluon density in a nucleus, suggested by A. Mueller, is developed and st...
Employing the representation of the experimental data on deep inelastic electron-proton scattering (...
We derive the complete Wilson renormalization group equation which governs the evolution of the gluo...
The Glauber approach to the gluon density in a nucleus, suggested by A. Mueller, is developed and st...
The BFKL and the unified angular-ordered equations are solved to determine the gluon distribution at...
Gluon distribution function at small x is computed using the extended McLerran-Venugopalan model. A ...
The behavior of gluon distributions in the small- x region are semi-numerically predicted by using t...
AbstractThe gluon distribution is dominated by the hard pomeron at small x and all Q2, with no soft-...
I discuss some of the basic techniques and results of soft gluon resummation, and their applications...
We present an analysis of the current methods of approximate determination of the gluon density $G(x...
A main feature of high-energy scattering in QCD is saturation in the number density of gluons. This ...
We employ a set of recent, theoretically motivated fits to nonperturbative unquenched gluon propagat...
We show that the saturation exponent is more effective than the hard pomeron exponent in the nonline...
We show estimates for shadowing of gluons at small values of $x$, appropriate to RHIC and LHC experi...
We show that the previously introduced CKMT model, based on conventional Regge theory, gives a good ...
The Glauber approach to the gluon density in a nucleus, suggested by A. Mueller, is developed and st...
Employing the representation of the experimental data on deep inelastic electron-proton scattering (...