The electric dipole moment of the neutron from 2+1 flavor lattice QCD

Abstract

We compute the electric dipole moment dn of the neutron from a fully dynamical simulation of lattice QCD with 2+1 flavors of clover fermions and nonvanishing theta term. The latter is rotated into the pseudoscalar density in the fermionic action using the axial anomaly. To make the action real, the vacuum angle theta is taken to be purely imaginary. The physical value of dn is obtained by analytic continuation. We find dn = -3.8(2)(9) x 10-16 [theta e cm], which, when combined with the experimental limit on dn, leads to the upper bound theta < 7.6 x 10-11.

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