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arXiv:1104.4319·v1·High Energy Physics — Lattice

Nucleon and Pion Form Factors from Anisotropic Lattices

Huey-Wen Lin🇺🇸 · Saul D. Cohen🇺🇸

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Abstract

We report a recent lattice-QCD calculation of nucleon and pion electromagnetic form factors and nucleon axial form factors, with special emphasis on large . Conventional lattice form-factor calculations can only reach about 2.5 GeV, but in this work the transfer momentum is pushed as large as 6 GeV. Here, we demonstrate the results on 2+1-flavor anisotropic clover lattices for the nucleon and pion, comparing with low- quantities, such as Dirac and Pauli radii, anomalous magnetic moments, and . Our approach can be applied to isotropic lattices and lattices with smaller lattice spacing to achieve even larger- form factors. The form factors are processed to obtain transverse charge and magnetization densities across 2-dimensional impact-parameter space. These measurements could give important theoretical input to experiments, such as those of JLab's 12-GeV program, and provide insight into hadronic structure.

Comments: 13 pages, 8 figures

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