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arXiv:2307.08620·v2·High Energy Physics — Lattice

Magnetic polarizability of a charged pion from four-point functions in lattice QCD

Frank X. Lee🇺🇸 · Walter Wilcox🇺🇸 · Andrei Alexandru🇺🇸 · Chris Culver🇬🇧

Abstract

Electromagnetic dipole polarizabilities are fundamental properties of a hadron that represent its resistance to deformation under external fields. For a charged hadron, the presence of acceleration and Landau levels complicates the isolation of its deformation energy in the conventional background field method. In this work, we explore a general method based on four-point functions in lattice QCD that takes into account all photon, quark and gluon interactions. The electric polarizability () has been determined from the method in a previous proof-of-principle simulation. Here we focus on the magnetic polarizability () using the same quenched Wilson action on a lattice at with pion mass from 1100 to 370 MeV. The results from the connected diagrams show a large cancellation between the elastic and inelastic contributions, leading to a relatively small and negative value for consistent with chiral perturbation theory. We also discuss the mechanism for from combining the two studies.

Comments: 11 pages, 8 figures, 1 table. Version accepted for publication in PRD. arXiv admin note: substantial text overlap with arXiv:2301.05200

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