activity
19952008
most citedTransverse spin structure of the nucleon from lattice QCD simulations

148 citations · 272 across the 11 of their papers we have counts for

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16 papers · 1 filter

hep-lat20082 cited

Nucleon structure in terms of OPE with non-perturbative Wilson coefficients

W. Bietenholz, N. Cundy, M. Gockeler +7

Lattice calculations could boost our understanding of Deep Inelastic Scattering by evaluating moments of the Nucleon Structure Functions. To this end we study the product of electr…

hep-lat200825 cited

The electric dipole moment of the nucleon from simulations at imaginary vacuum angle theta

R. Horsley, T. Izubuchi, Y. Nakamura +4

We compute the electric dipole moment of proton and neutron from lattice QCD simulations with N_f=2 flavors of dynamical quarks at imaginary vacuum angle theta. The calculation pro…

hep-lat200824 cited

Perturbative determination of for plaquette and Symanzik gauge action and stout link clover fermions

R. Horsley, H. Perlt, P. E. L. Rakow +2

Using plaquette and Symanzik improved gauge action and stout link clover fermions we determine the improvement coefficient in one-loop lattice perturbation theory from the…

hep-lat200843 cited

Nucleon distribution amplitudes from lattice QCD

Meinulf Göckeler, Roger Horsley, Thomas Kaltenbrunner +8

We calculate low moments of the leading-twist and next-to-leading twist nucleon distribution amplitudes on the lattice using two flavors of clover fermions. The results are present…

hep-lat20074 cited

A status report of the QCDSF Project

Meinulf Göckeler, Roger Horsley, Yoshifumi Nakamura +8

We report about on-going simulations of lattice QCD. We use a tadpole improved Symanzik gauge action and stout link smeared Wilson fermions with a clover term. We employ…

hep-lat20076 cited

Probing the chiral limit with clover fermions II: The baryon sector

M. Göckeler, Philipp Hägler, R. Horsley +9

Algorithmic progress in recent years made it possible to simulate QCD with Nf=2 flavours of O(a)-improved Wilson fermions at very light quark masses. We present the current results…