61 research outputs found

    Nucleon structure from 2+1 flavor lattice QCD near the physical point

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    We present an update on our results of nucleon form factors measured on a large-volume lattice (8.1fm)4(8.1\rm{fm})^4 at almost the physical point in 2+1 flavor QCD. The configurations are generated with the stout-smeared O(a)\mathcal{O}(a) improved Wilson quark action and Iwasaki gauge action at β=1.82\beta = 1.82, which corresponds to the lattice spacing of 0.085 fm. The pion mass at the simulation point is about 145 MeV. We determine the iso- vector electric radius and magnetic moment from nucleon electric (GEG_E) and magnetic (GMG_M) form factors. We also report on preliminary results of the axial-vector (FAF_A), induced pseudo-scalar (FPF_P) and pseudo-scalar (GPG_P) form factors in order to verify the axial Ward- Takahashi identity in terms of the nucleon matrix elements, which may be called as the generalized Goldberger-Treiman relation.Comment: 8 pages, 12 figures; talk presented at the 35th International Symposium on Lattice Field Theory, 18-24 June 2017, Granada, Spai
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