An analytical solution based on the Laplace transformation technique for the Dokshitzer-Gribov-Lipatov- Altarelli-Parisi (DGLAP) evolution equations is presented at next-to-leading order accuracy in perturbative QCD. This technique is also applied to extract the analytical solution for the proton structure function, Fp2 (x,Q2), in the Laplace s space.We present the results for the separate parton distributions of all parton species, including valence quark densities, the antiquark and strange sea parton distribution functions (PDFs), and the gluon distribution. We successfully compare the obtained parton distribution functions and the proton structure function with the results from GJR08 [Gluck, Jimenez-Delgado, and Reya, Eur. Phys. J...
Inspired by recent measurements with the CLAS detector at Jefferson Lab, we perform a self-consisten...
In this paper, we present the extraction of the Parton Distribution Functions (PDFs) at small moment...
Employing the representation of the experimental data on deep inelastic electron-proton scattering (...
An analytical solution based on the Laplace transformation technique for the Dokshitzer-Gribov-Lipat...
An analytical solution based on the Laplace transformation technique for the Dokshitzer-Gribov-Lipat...
We present a detailed QCD analysis of nucleon structure functions x F 3 ( x , Q 2 ) , bas...
An exact expression for the leading-order (LO) gluon distribution function G(x,Q 2)=xg(x,Q 2) from t...
We present particular and unique solutions of singlet and non-singlet Dokshitzer-Gribov-Lipatov-Alta...
Measurements of Deep Inelastic Scattering (DIS) provide a powerful tool to probe the fundamental str...
We present a detailed QCD analysis of nucleon structure functions xF3(x,Q2), based on Laplace transf...
We recently derived a very accurate and fast new algorithm for numerically inverting the Laplace tra...
We investigate an alternative to the DGLAP evolution of structure functions through the use of Fixed...
We summarize the results of a recent global analysis of proton and deuteron F2 structure function wo...
physics pp. 193–213 The next-to-leading order (NLO) gluon distribution from DGLAP equation and the l...
We present an analysis of the current methods of approximate determination of the gluon density $G(x...
Inspired by recent measurements with the CLAS detector at Jefferson Lab, we perform a self-consisten...
In this paper, we present the extraction of the Parton Distribution Functions (PDFs) at small moment...
Employing the representation of the experimental data on deep inelastic electron-proton scattering (...
An analytical solution based on the Laplace transformation technique for the Dokshitzer-Gribov-Lipat...
An analytical solution based on the Laplace transformation technique for the Dokshitzer-Gribov-Lipat...
We present a detailed QCD analysis of nucleon structure functions x F 3 ( x , Q 2 ) , bas...
An exact expression for the leading-order (LO) gluon distribution function G(x,Q 2)=xg(x,Q 2) from t...
We present particular and unique solutions of singlet and non-singlet Dokshitzer-Gribov-Lipatov-Alta...
Measurements of Deep Inelastic Scattering (DIS) provide a powerful tool to probe the fundamental str...
We present a detailed QCD analysis of nucleon structure functions xF3(x,Q2), based on Laplace transf...
We recently derived a very accurate and fast new algorithm for numerically inverting the Laplace tra...
We investigate an alternative to the DGLAP evolution of structure functions through the use of Fixed...
We summarize the results of a recent global analysis of proton and deuteron F2 structure function wo...
physics pp. 193–213 The next-to-leading order (NLO) gluon distribution from DGLAP equation and the l...
We present an analysis of the current methods of approximate determination of the gluon density $G(x...
Inspired by recent measurements with the CLAS detector at Jefferson Lab, we perform a self-consisten...
In this paper, we present the extraction of the Parton Distribution Functions (PDFs) at small moment...
Employing the representation of the experimental data on deep inelastic electron-proton scattering (...