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The Quark/Antiquark Asymmetry of the Nucleon Sea

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arxiv hep-ph/9604393 v1 pith:SHWR5CIU submitted 1996-04-23 hep-ph nucl-th

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

Although the distributions of sea quarks and antiquarks generated by leading-twist QCD evolution through gluon splitting $g \rightarrow \bar q q$ are necessarily CP symmetric, the distributions of nonvalence quarks and antiquarks which are intrinsic to the nucleon's bound state wavefunction need not be identical. In this paper we investigate the sea quark/antiquark asymmetries in the nucleon wavefunction which are generated by a light-cone model of energetically-favored meson-baryon fluctuations. The model predicts striking quark/antiquark asymmetries in the momentum and helicity distributions for the down and strange contributions to the proton structure function: the intrinsic $d$ and $s$ quarks in the proton sea are predicted to be negatively polarized, whereas the intrinsic $\bar d$ and $\bar s$ antiquarks give zero contributions to the proton spin. Such a picture is supported by experimental phenomena related to the proton spin problem and the violation of the Ellis-Jaffe sum rule. The light-cone meson-baryon fluctuation model also suggests a structured momentum distribution asymmetry for strange quarks and antiquarks which could be relevant to an outstanding conflict between two different determinations of the strange quark sea in the nucleon. The model predicts an excess of intrinsic $d \bar d$ pairs over $u \bar u$ pairs, as supported by the Gottfried sum rule violation. We also predict that the intrinsic charm and anticharm helicity and momentum distributions are not identical.

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Cited by 2 Pith papers

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  1. Strange-antistrange and charm-anticharm asymmetries of pion in 't Hooft model

    hep-ph 2024-12 conditional novelty 5.0 of 10

    In the 't Hooft model, the first excited pion has a few-percent strange-antistrange asymmetry, and the meson cloud model reproduces it but fails for charm-anticharm asymmetry.

  2. Impact of parity-violating deep-inelastic scattering on the weak mixing angle and high-$x$ parton distributions

    hep-ph 2026-06 unverdicted novelty 4.0 of 10

    Simulations of 11 and 22 GeV PVDIS pseudodata indicate potential constraints on low-Q² sin²θ_W and high-x strange quark and d/u PDFs, with strong correlations requiring simultaneous QCD-electroweak analysis.

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