Strange magnetic form factor of the proton at GeV
arXiv:0807.0944 · doi:10.1103/PhysRevC.79.065202
Abstract
We determine the and quark contributions to the proton magnetic form factor at finite momentum transfer by applying chiral corrections to quenched lattice data. Heavy baryon chiral perturbation theory is applied at next to leading order in the quenched, and full QCD cases for the valence sector using finite range regularization. Under the assumption of charge symmetry these values can be combined with the experimental values of the proton and neutron magnetic form factors to deduce a relatively accurate value for the strange magnetic form factor at GeV, namely .
12 pages, 4 figures
References in corpus (14)
- Precision Measurements of the Nucleon Strange Form Factors at Q^2 ~0.1 GeV^2
- Vector and Axial Nucleon Form Factors:A Duality Constrained Parameterization
- Charge Symmetry Breaking and QCD
- Measurement of Strange Quark Contributions to the Vector Form Factors of the Proton at Q**2=0.22 (GeV/c)**2
- Extracting nucleon strange and anapole form factors from world data
- Precision Electromagnetic Structure of Octet Baryons in the Chiral Regime
- Strange Electric Form Factor of the Proton
- Testing the Standard Model by precision measurement of the weak charges of quarks
- Extraction of the Neutron Magnetic Form Factor from Quasi-Elastic 3He(pol)(e(pol),e') at Q^2 = 0.1 - 0.6 (GeV/c)^2
- Resolution of the Proton Spin Problem
- Isospin violation in the vector form factors of the nucleon
- Chiral extrapolation of nucleon magnetic form factors
- The Spin of the Proton
- Strange nucleon form factors: Solitonic approach to , , and and comparison with world data
Cited by in corpus (40)
- Nucleon form factors, generalized parton distributions and quark angular momentum
- Strange Quark Contributions to Parity-Violating Asymmetries in the Backward Angle G0 Electron Scattering Experiment
- Nucleon electromagnetic form factors from lattice QCD using a nearly physical pion mass
- Constraining quark angular momentum through semi-inclusive measurements
- Flavor decomposition of the nucleon electromagnetic form factors
- Nucleon strangeness form factors from N_f=2+1 clover fermion lattice QCD
- Exploring strange nucleon form factors on the lattice
- The P2 Experiment - A future high-precision measurement of the electroweak mixing angle at low momentum transfer
- Parity Violation in Elastic Electron-Nucleon Scattering: Strangeness Content in the Nucleon
- Finite-volume and partial quenching effects in the magnetic polarizability of the neutron
- Magnetic polarisability of the nucleon using a Laplacian mode projection
- Strange magnetic form factor of nucleon in heavy baryon chiral effective approach at next to leading order
- Nucleon electromagnetic form factors with non-local chiral effective Lagrangian
- Nucleon resonance structure in the finite volume of lattice QCD
- Neutron magnetic polarisability with Landau mode operators
- Determination of the strange nucleon form factors
- The First Moments of Nucleon Generalized Parton Distributions
- Chiral extrapolation of nucleon magnetic moments at next-to-leading-order
- Strange form factors of nucleon with nonlocal chiral effective Lagrangian
- Electromagnetic form factors of octet baryons with the nonlocal chiral effective theory
- Strange Vector Form Factors from Parity-Violating Electron Scattering
- The spin of the proton in chiral effective field theory
- Charge Symmetry Breaking and Parity Violating Electron-Proton Scattering
- Strangeness magnetic form factor of the proton in the extended chiral quark model
- Generalized parton distributions of sea quarks in the proton from nonlocal chiral effective theory
- Pure sea-quark contributions to the magnetic form factors of baryons
- Solid quantization for non-point particles
- Chiral extrapolation of the charged-pion magnetic polarizability with Padé approximant
- Charge Symmetry Breaking and Parity Violating Electron Scattering
- Chiral extrapolation of nucleon axial charge in effective field theory
- Nucleon magnetic form factors with non-local chiral effective Lagrangian
- Singlet baryons in the graded symmetry approach to partially quenched QCD
- Magnetic Polarisability of Octet Baryons via Lattice QCD
- Sea quark contributions to nucleon electromagnetic form factors with the nonlocal chiral effective Lagrangian
- Unravelling strange quarks in nucleon structure
- Charge-symmetry-breaking nucleon form factors
- The calculation of nucleon strangeness form factors from N_f=2+1 clover fermion lattice QCD
- Sea quark contributions to the electromagnetic form factors of hyperons
- Overview of Issues Surrounding Strangeness in the Nucleon
- Charge symmetry violation in the determination of strangeness form factors