Improvements to Nucleon Matrix Elements within a $\theta$ Vacuum from Lattice QCD
Abstract
Using the gradient flow, we calculated the nucleon mixing angle and the nucleon electric dipole moment (EDM) induced by the QCD -term. To do so, we computed the topological charge, and the nucleon two-point and three-point correlation functions. The purpose of these proceedings is to explore how the topological charge density interacts with the nucleon interpolation operators. By understanding this relation, we can try to suppress noise contributions to the and EDM signals by selecting specific regions where the signal dominates. Using gauge fields provided by PACS-CS at , a first collection of ensembles were selected at a fixed lattice spacing fm (), fixed dimensions and varying MeV. A second collection was selected at fixed MeV, fixed box size of fm and varying fm.
Cite
@article{arxiv.1809.03487,
title = {Improvements to Nucleon Matrix Elements within a $\theta$ Vacuum from Lattice QCD},
author = {Jack Dragos and Thomas Luu and Andrea Shindler and Jordy de Vries and Ahmed Yousif},
journal= {arXiv preprint arXiv:1809.03487},
year = {2018}
}
Comments
7 pages, 12 figures, presented at the 36th International Symposium on Lattice Field Theory (Lattice 2018)