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Higher twists effects in DIS on nuclei at the EIC and LHeC: A phenomenological analysis

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arxiv 2210.17226 v2 pith:XUSY2ZVY submitted 2022-10-31 hep-ph nucl-th

classification hep-phnucl-th
keywords effectslineartwistsanalysisdifferentdynamicsfuturehigher
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In this paper we investigate the impact of the higher - twist effects, resummed by the non - linear approaches for the QCD dynamics, on the inclusive observables that will be measured in future electron - ion colliders. We assume a phenomenological model for the dipole - nucleus scattering amplitude which takes into account the non - linear corrections and estimate the contribution of the different twists for $F_2^A(x,Q^2)$, $F_L^A(x,Q^2)$ and $\partial F_2^A /\partial ln Q^2$ considering different values of the Bjorken - $x$ variable, photon virtuality $Q^2$ and atomic number $A$. A comparison with the full predictions is performed and the impact of the distinct twists is estimated. Our results indicate that a future analysis of the logarithmic $Q^2$ slope and longitudinal structure function will allow us to probe the presence of the non - linear effects on the QCD dynamics.

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  1. Dilepton angular distributions in the color-dipole $S$-matrix framework

    hep-ph 2025-07 conditional novelty 5.0 of 10

    First derivation of Z and W helicity density matrix elements in the color-dipole S-matrix framework, with forward-rapidity predictions at 14 TeV linking the Lam-Tung violation to the UGD tail.

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