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Nucleon strange electromagnetic form factors

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arxiv 1909.10744 v1 pith:4NCF6R4Q submitted 2019-09-24 hep-lat hep-phnucl-exnucl-th

Nucleon strange electromagnetic form factors

classification hep-lat hep-phnucl-exnucl-th
keywords strangefactorsformelectromagneticmagneticlanglenucleonquarks
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The role of the strange quarks on the low-energy interactions of the proton can be probed through the strange electromagnetic form factors. Knowledge of these form factors provides essential input for parity-violating processes and contributes to the understanding of the sea quark dynamics. We determine the strange electromagnetic form factors of the nucleon within the lattice formulation of Quantum Chromodynamics using simulations that include light, strange and charm quarks in the sea all tuned to their physical mass values. We employ state-of-the-art techniques to accurately extract the form factors for values of the momentum transfer square up to 0.8~GeV$^2$. We find that both the electric and magnetic form factors are statistically non-zero. We obtain for the strange magnetic moment $\mu^s=-0.017(4)$, the strange magnetic radius $\langle r^2_M \rangle^s=-0.015(9)$~fm$^2$, and the strange charge radius $\langle r^2_E \rangle^s=-0.0048(6)$~fm$^2$.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Ab initio calculations of parity-violating electron scattering off $^{48}$Ca and $^{208}$Pb

    nucl-th 2026-06 unverdicted novelty 8.0

    Ab initio chiral EFT calculations of parity-violating asymmetries for 48Ca and 208Pb show mild tension with data and infer a neutron skin of 0.187(25)(18) fm for 208Pb.

  2. Radiative corrections in neutral-current (anti)neutrino elastic scattering at $\text{GeV}$ energies I: Nucleon targets

    hep-ph 2026-07 conditional novelty 6.0

    Radiative corrections to neutral-current (anti)neutrino-nucleon elastic scattering are computed within low-energy EFT and reach a few percent, comparable to the strange-quark effects they must be disentangled from.

  3. A relativistic mechanism for the enhanced isovector spin-orbit interaction suggested by parity-violating electron scattering experiments

    nucl-th 2025-11 conditional novelty 6.0

    An enhanced isovector tensor coupling in a covariant density functional fits both PREX-II and CREX weak-charge form-factor differences, acting through a strong isovector spin-orbit interaction.

  4. Nucleon strange electromagnetic form factors using $N_f=2+1+1$ twisted-mass fermions at the physical point

    hep-lat 2026-05 unverdicted novelty 5.0

    Continuum-extrapolated strange electric and magnetic radii plus strange magnetic moment of the nucleon are obtained from lattice QCD at the physical pion mass using Nf=2+1+1 twisted-mass fermions.