A lattice QCD determination of the neutron electric dipole moment at the physical point
Abstract
Results are presented on the neutron electric dipole moment using an ensemble of Nf=2+1+1 twisted mass clover-improved fermions with lattice spacing of a 0.08 fm and physical pion mass (mπ 139 MeV). The approach followed in this work is to compute the CP-odd electromagnetic form factor F3(Q2→0) at zero momentum transfer by expanding the action to leading order in θ. This gives rise to correlation functions that involve the topological charge, for which we employ a fermionic definition by means of spectral projectors. We include a comparison between the results using the fermionic and the gluonic definition, where for the latter we employ the gradient flow. We show that using spectral projectors leads to half the statistical uncertainty on the evaluation of F3(0). Using the fermionic definition, we find a value of dN = 0.0009(24)\,θ\, e·fm.
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