Quantum electrodynamical corrections to a magnetic dipole in general relativity

Abstract

Magnetized neutron stars are privileged places where strong electromagnetic fields as high as =4.4×109~T exist, giving rise to non-linear corrections to Maxwell equations described by quantum electrodynamics (QED). These corrections need to be included to the general relativistic (GR) description of a magnetic dipole supposed to be anchored in the neutron star. In this paper, these QED and GR perturbations to the standard flat space-time dipole are calculated to the lowest order in the fine structure constant~α sf and to any order in the ratio /R where R is the neutron star radius and its Schwarzschild radius. Following our new 3+1~formalism developed in a previous work, we compute the multipolar non-linear corrections to this dipole and demonstrate the presence of a small dipolar~=1 and hexapolar~=3 component.

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