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arXiv:1809.05728·v2·High Energy Physics — Phenomenology

EMC effect in the next-to-leading order approximation based on the Laplace transformation

Javad Sheibani🇮🇷 · Abolfazl Mirjalili🇮🇷 · S. Atashbar Tehrani🇮🇷

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Abstract

In this article, using Laplace transformation , an analytical solution is obtained for the DGLAP evolution equation at the next-to-leading order of perturbative QCD. The technique is also employed to extract, in the Laplace -space, an analytical solution for the nuclear structure function, . Firstly, the results for separate nuclear parton distributions for all parton types are presented which include valence quark densities, the anti-quark and strange sea PDFs and finally the gluon distribution. Based on the Laplace transformation, the obtained parton distribution functions and the nuclear structure function in the -space are compared with the results from the [Phys.\ Rev.\ C series 86, 064301 (2012)] model. Our calculations are in good agreement with the available DIS experimental data as well as theoretical models which contain both small and large values of -Bjorken variable. We compare our nuclear PDFs sets with those from other recent collaborations, in particular with the [ nCTEQ15 ] and [ HKN07] sets. The comparison between our results and those from the literature indicates a good agreement .

Comments: 12 Pages,11 figures

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