paper

Born-Infeld Electrogravity and Dyonic Black Holes

arXiv:2511.05273 · doi:10.1088/1361-6382/ae9114

Abstract

Born-Infeld electrogravity is defined through a Lagrangian that couples gravity and electromagnetism within a single determinantal structure. The field equations are derived in Palatini's formalism, where the metric, connection, and vector potential are varied independently in the action. As a result, the gravitational sector reduces to Einstein's equations with a torsion-free, metric-compatible connection. The electrodynamic sector, in turn, admits two equivalent interpretations or : it can be seen either as a standard Born-Infeld electrodynamics in an effective background geometry, or as an Born-Infeld electrodynamics in the physical metric. We illustrate the dynamics by analyzing the horizon structure, the extremality conditions, and the thermodynamics of spherically symmetric dyonic solutions.

21 pages, 2 figures. Published version