I will discuss briefly recent changes in the methodology of computing the baryon EDM on a lattice. The associated correction substantially reduces presently existing lattice values for the proton and neutron theta-induced EDMs, so that even the most precise previous lattice results become consistent with zero. On one hand, this change removes previous disagreements between these lattice results and the phenomenological estimates of the nucleon EDM. On the other hand, the nucleon EDM becomes much harder to compute on a lattice. In addition, I will review the progress in computing quark chromo-EDM-induced nucleon EDM using chiral quark action
We simulate lattice quantum chromodynamics on asymmetric lattices with improved actions, where quenc...
I review the the application of the lattice formulation of QCD and large-scale numerical simulations...
I review the current status of hadronic structure computations on the lattice. I describe the basic ...
In this talk, we motivate the calculation of the matrix elements of novel CP violating operators, th...
For the neutron to have an electric dipole moment (EDM), the theory of nature must have T, or equiva...
Lattice QCD is rapidly progressing toward being able to reliably compute the electric dipole moment ...
Abstract. Precision measurements on nucleons provide constraints on the Standard Model and can also ...
Abstract. Precision measurements of nucleons provide constraints on the Standard Model and can disce...
I comment on progress of lattice QCD techniques and calculations. Recent results on pentaquark masse...
International audienceWe calculate the nucleon electric dipole moment (EDM) from the $\theta$ term w...
We present a lattice calculation of the electromagnetic (EM) effects on the masses of light pseudosc...
The chiral extrapolation of the nucleon mass, Mn, is investigated using data coming from 2-flavour p...
The interpretation of nuclear electric dipole moment (EDM) experiments is clouded by large theoretic...
We explore the possibility of extrapolating state of the art lattice QCD calculations of nucleon ele...
Computing hadronic observables by solving QCD from first principles with realistic quark masses is a...
We simulate lattice quantum chromodynamics on asymmetric lattices with improved actions, where quenc...
I review the the application of the lattice formulation of QCD and large-scale numerical simulations...
I review the current status of hadronic structure computations on the lattice. I describe the basic ...
In this talk, we motivate the calculation of the matrix elements of novel CP violating operators, th...
For the neutron to have an electric dipole moment (EDM), the theory of nature must have T, or equiva...
Lattice QCD is rapidly progressing toward being able to reliably compute the electric dipole moment ...
Abstract. Precision measurements on nucleons provide constraints on the Standard Model and can also ...
Abstract. Precision measurements of nucleons provide constraints on the Standard Model and can disce...
I comment on progress of lattice QCD techniques and calculations. Recent results on pentaquark masse...
International audienceWe calculate the nucleon electric dipole moment (EDM) from the $\theta$ term w...
We present a lattice calculation of the electromagnetic (EM) effects on the masses of light pseudosc...
The chiral extrapolation of the nucleon mass, Mn, is investigated using data coming from 2-flavour p...
The interpretation of nuclear electric dipole moment (EDM) experiments is clouded by large theoretic...
We explore the possibility of extrapolating state of the art lattice QCD calculations of nucleon ele...
Computing hadronic observables by solving QCD from first principles with realistic quark masses is a...
We simulate lattice quantum chromodynamics on asymmetric lattices with improved actions, where quenc...
I review the the application of the lattice formulation of QCD and large-scale numerical simulations...
I review the current status of hadronic structure computations on the lattice. I describe the basic ...