Nucleon structure from 2+1 flavor lattice QCD near the physical point
arXiv:1710.10782 · doi:10.1051/epjconf/201817506007
Abstract
We present an update on our results of nucleon form factors measured on a large-volume lattice at almost the physical point in 2+1 flavor QCD. The configurations are generated with the stout-smeared improved Wilson quark action and Iwasaki gauge action at , 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 () and magnetic () form factors. We also report on preliminary results of the axial-vector (), induced pseudo-scalar () and pseudo-scalar () 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.
8 pages, 12 figures; talk presented at the 35th International Symposium on Lattice Field Theory, 18-24 June 2017, Granada, Spain
Cited by in corpus (6)
- Nucleon axial structure from lattice QCD
- Nucleon form factors on a large volume lattice near the physical point in 2+1 flavor QCD
- Solving the PCAC puzzle for nucleon axial and pseudoscalar form factors
- -state contamination in lattice calculations of the nucleon pseudoscalar form factor
- Toward to matrix elements from lattice QCD
- -states and the projection method for the nucleon axial and pseudoscalar form factors