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A systematical study of the nucleon form factors with the pion cloud effect

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abstract

The electromagnetic and gravitational form factors of the nucleon are studied simultaneously using a covariant quark-diquark approach, and the pion cloud effect on the form factors is explicitly discussed. In this study, the electromagnetic form factors are calculated to determine the parameters of our approach. Then, the gravitational form factors of the nucleon are evaluated with the same parameters. The electromagnetic and mechanical properties, such as charge radii, magnetic moments, and mass radii are presented. Moreover, the D-term, which is believed to be connected with the internal force inside the nucleon, is also discussed in this paper. Our results are in reasonable agreement with the experimental and lattice results, and it is suggested that the pion cloud contribution plays an indispensable role, especially for the magnetic moments and the sign of D-term.

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2025 1

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Transverse force distributions in the proton from lattice QCD

hep-lat · 2025-02-01 · conditional · novelty 5.0

Lattice QCD computes the transverse spatial distribution of the colour-Lorentz force on the struck quark in a proton, finding local forces up to about 3 GeV/fm, larger than the QCD string tension.

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  • Transverse force distributions in the proton from lattice QCD hep-lat · 2025-02-01 · conditional · none · ref 27 · internal anchor

    Lattice QCD computes the transverse spatial distribution of the colour-Lorentz force on the struck quark in a proton, finding local forces up to about 3 GeV/fm, larger than the QCD string tension.