arXiv:1410.8405·v1·High Energy Physics — Lattice
A Hybrid Strategy for the Lattice Evaluation of the Leading Order Hadronic Contribution to
Maarten Golterman (SFSU)🇺🇸 · Kim Maltman (York Univ. and CSSM, Univ. of Adelaide)🇨🇦 · Santiago Peris (UAB)🇪🇸
Abstract
The leading-order hadronic contribution to the muon anomalous magentic moment, , can be expressed as an integral over Euclidean of the vacuum polarization function. We point out that a simple trapezoid-rule numerical integration of the current lattice data is good enough to produce a result with a less-than- error for the contribution from the interval above . This leaves the interval below this value of as the one to focus on in the future. In order to achieve an accurate result also in this lower window , we indicate the usefulness of three possible tools. These are: Padé Approximants, polynomials in a conformal variable and a NNLO Chiral Perturbation Theory representation supplemented by a term. The combination of the numerical integration in the upper interval together with the use of these tools in the lower interval provides a hybrid strategy which looks promising as a means of reaching the desired goal on the lattice of a sub-percent precision in the hadronic vacuum polarization contribution to the muon anomalous magnetic moment.
Comments: 7 pages, 7 figures. Contribution to the proceedings of the 37th International Conference on High Energy Physics, Valencia (Spain), July 2014