• Open Access

Electromagnetic finite-size effects to the hadronic vacuum polarization

J. Bijnens, J. Harrison, N. Hermansson-Truedsson, T. Janowski, A. Jüttner, and A. Portelli
Phys. Rev. D 100, 014508 – Published 24 July 2019
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Abstract

In order to reduce the current hadronic uncertainties in the theory prediction for the anomalous magnetic moment of the muon, lattice calculations need to reach subpercent accuracy on the hadronic-vacuum-polarization contribution. This requires the inclusion of O(α) electromagnetic corrections. The inclusion of electromagnetic interactions in lattice simulations is known to generate potentially large finite-size effects suppressed only by powers of the inverse spatial extent. In this paper we derive an analytic expression for the QEDL finite-volume corrections to the two-pion contribution to the hadronic vacuum polarization at next-to-leading order in the electromagnetic coupling in scalar QED. The leading term is found to be of order 1/L3 where L is the spatial extent. A 1/L2 term is absent since the current is neutral and a photon far away thus sees no charge and we show that this result is universal. Our analytical results agree with results from the numerical evaluation of loop integrals as well as simulations of lattice scalar U(1) gauge theory with stochastically generated photon fields. In the latter case the agreement is up to exponentially suppressed finite-volume effects. For completeness we also calculate the hadronic vacuum polarization in infinite volume using a basis of 2-loop master integrals.

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  • Received 5 April 2019

DOI:https://doi.org/10.1103/PhysRevD.100.014508

Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI. Funded by SCOAP3.

Published by the American Physical Society

Physics Subject Headings (PhySH)

Particles & Fields

Authors & Affiliations

J. Bijnens1, J. Harrison2, N. Hermansson-Truedsson1, T. Janowski3, A. Jüttner2, and A. Portelli3,*

  • 1Department of Astronomy and Theoretical Physics, Lund University, 223 62 Lund, Sweden
  • 2School of Physics and Astronomy, University of Southampton, Southampton SO17 1BJ, United Kingdom
  • 3School of Physics and Astronomy, University of Edinburgh, Edinburgh EH9 3FD, United Kingdom

  • *Corresponding author. antonin.portelli@ed.ac.uk

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Vol. 100, Iss. 1 — 1 July 2019

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