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Phenomenology of Nuclear Shadowing in Deep-Inelastic Scattering

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arxiv hep-ph/9504407 v2 pith:4ULW4R72 submitted 1995-04-27 hep-ph

classification hep-ph
keywords shadowingscatteringcoherentdeep-inelasticnucleonsdependenceeffecteffects
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We investigate shadowing effects in deep-inelastic scattering from nuclei at small values $x<0.1$ of the Bjorken variable. Unifying aspects of generalized vector meson dominance and color transparency we first develop a model for deep-inelastic scattering from free nucleons at small $x$. In application to nuclear targets we find that the coherent interaction of quark-antiquark fluctuations with nucleons in a nucleus leads to the observed shadowing at $x<0.1$. We compare our results with most of the recent data for a large variety of nuclei and examine in particular the $Q^2$ dependence of the shadowing effect. While the coherent interaction of low mass vector mesons causes a major part of the shadowing observed in the $Q^2$ range of current experiments, the coherent scattering of continuum quark-antiquark pairs is also important and guarantees a very weak overall $Q^2$ dependence of the effect. We also discuss shadowing in deuterium and its implications for the quark flavor structure of nucleons. Finally we comment on shadowing effects in high-energy photon-nucleus reactions with real photons.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 59 citations worldwide. Full citation record

  1. Producing and Studying Rare Isotopes in $e+A$ Collisions at the Electron-Ion Collider

    nucl-th 2026-02 conditional novelty 6.0 of 10

    Simulations indicate the EIC can produce diverse rare isotopes and measure their de-excitation gamma rays, enabling a collider-based nuclear spectroscopy program.

  2. Tracing the Evolution of Nuclear Excitation at the Electron-Ion Collider

    hep-ph 2025-06 conditional novelty 6.0 of 10

    BeAGLE simulations predict that event-by-event mean transverse momentum fluctuations (kappa) at the EIC are sensitive to cascade formation time and nuclear size, but not to beam energy.

  3. Nuclear parton distributions and nuclear shadowing

    hep-ph 2026-06 unverdicted novelty 2.0 of 10

    A review summarizing experimental evidence, theoretical models of nuclear shadowing, model-agnostic nuclear PDF extractions, and prospects for LHC and EIC studies.

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