Abstract

We extract the polarized parton distribution functions (PPDFs) of proton. To this end we do a global analysis on recent and up-to-dated experimental data of polarized nucleon and deuteron structure functions at the NLO accuracy of perturbative QCD. We use the Jacobi polynomials expansion technique to do the required analyses. To achieve a more realistic estimation of the PPDFs and observable uncertainties we employ the Hessian error propagation. Following that we apply a theoretical approach which is based on imposing Lorentz structure in the parton model to investigate the transverse momentum dependence of these PPDFs. In this approach, the transverse momentum dependent (TMD) polarized parton distributions, which are also called the helicity distributions, are related to the integrated ones. This relation is indicating the priority and importance of data analysis for PPDFs. The results show a convenient general treatment expected for TMD densities which are in fact resulted from data analysis and fitting processes of integrated PPDFs in an adequate and a proper way.

Highlights

  • In exact consideration of inclusive deep-inelastic scattering (DIS) processes it is required to take into account the distributions in which the role of transverse momentum is embedded

  • We apply a theoretical model in which the transverse momentum dependence of the quark distributions are obtained by considering Lorentz structure in the parton model [47]

  • We calculate the polarized parton distribution functions (PPDFs) of proton using a global analysis of recent experimental data

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Summary

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We study the transverse momentum dependence of polarized PDFs applying a more general model which is based upon imposing Lorentz covariance in the parton model [47] whereas the obtained results are in agreement with those of CPM [39,41,45]. [47], it is required to analyse the available data on polarized nucleon structure function to extract PPDFs at initial energy scale. Following that the polarized nucleon structure function is constructed, using the fitted results for parameterized PPDFs at the initial energy scale.

Parametrization
Jacobi polynomials technique
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Polarized PDFs comparison
Polarized structure function comparison
Transverse momentum dependence of polarized PDFs
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M2 x kT2 x2M2
Results of TMD polarized densities
Conclusions
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Full Text
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