Abstract

In this paper, the contribution of the interaction in the structure function of the deuteron is investigated. For this study we use two different methods, constituted nucleons model and the DGLAP evolution equations. We obtain the interaction term using calculated proton, neutron and deuteron structure functions. The extracted results are in agreement with experimental data. The results achieved from the DGLAP equations show better consequence with experimental data. Also the ratio $${{F_{2}^{d}} \mathord{\left/ {\vphantom {{F_{2}^{d}} {(F_{2}^{n} + F_{2}^{p})}}} \right. \kern-0em} {(F_{2}^{n} + F_{2}^{p})}}$$ is studied and compared with the experimental data and the deuteron correction factor.

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