A causal magnetic black hole with finite self-energy
Mohsen Fathi, Ariel Guzmán, J. R. Villanueva
gr-qc, astro-ph.HE, hep-th, math-ph, math.MP
Submitted: 2026-08-06
Updated: 2026-08-10
Comments: 24 pages, 12 figures, 2 tables
License: http://creativecommons.org/licenses/by/4.0/
The gist: We construct a nonlinear electrodynamics (NLED) model for a static magnetic black hole.
Terminology
Abstract
We construct a nonlinear electrodynamics (NLED) model for a static magnetic black hole. Rather than imposing a regular center, we require a Maxwell weak-field limit, finite magnetic self-energy, a positive and subluminal electromagnetic cone, the standard energy conditions, and a static exterior that satisfies known sufficient stability criteria. A positive mixture of power kernels restricts the exponent to 1/4< gamma at most1/2. For the minimal two-kernel model, with gamma 1=1/3 and gamma 2=1/2, the field equations admit an exact solution in terms of incomplete beta functions. For the branches with nonnegative Schwarzschild mass parameter M 0, the metric function is strictly increasing, so there is at most one positive-radius horizon and no inner Cauchy horizon. We construct the maximal extension and show that the black-hole, horizonless, and critical branches have spacelike, timelike, and null singularities, respectively. The representative black-hole families have positive temperature and negative fixed-charge heat capacity. Electromagnetic waves split into ordinary and extraordinary optical branches. We calculate their photon spheres, shadow radii, instability rates, and illustrative Event Horizon Telescope size bands. We also construct ISCO-truncated thin-disk images. The full images remain close, but jointly normalized residual maps and radial profiles reveal a coherent branch-dependent shift near the lensed inner edge and the critical region. The extraordinary branch moves the critical curve outward and partly compensates the shadow reduction caused by magnetic charge.
Sources
- A non-linear duality-invariant conformal extension of Maxwell's equations
- Introductory Notes on Non-linear Electrodynamics and its Applications
- Causality and Energy Conditions in Nonlinear Electrodynamics
- Effective Lagrangian in nonlinear electrodynamics and its properties of causality and unitarity
- On causality in nonlinear vacuum electrodynamics of the Pleba'nski class
- Magnetically charged regular black hole in a model of nonlinear electrodynamics
- Construction of Regular Black Holes in General Relativity
- Born--Infeld-type electrodynamics and magnetic black holes
- Comment on "Construction of regular black holes in general relativity"
- Lagrangian reverse engineering for regular black holes
- Conundrum of regular black holes with nonlinear electromagnetic fields
- Existence conditions of nonsingular dyonic black holes in nonlinear electrodynamics
- AdS--dS Stationary Rotating Black Hole Exact Solution within Einstein--Nonlinear Electrodynamics
- Unveiling the electrodynamics of the first nonlinearly charged rotating black hole
- Nonlinearly charging the conformally dressed black holes preserving duality and conformal invariance
- New Black Hole Solutions of Second and First Order Formulations of Nonlinear Electrodynamics
- Electromagnetized black holes and swirling backgrounds in nonlinear electrodynamics: The ModMax case
- Regular black holes sourced by nonlinear electrodynamics
- Instability of nonsingular black holes in nonlinear electrodynamics
- Black holes and causal nonlinear electrodynamics
Related papers
- Tests of General Relativity with Einstein Telescope
- Unitary quantum matter-bounce in a universe with a positive cosmological constant
- Quasi-pole quintessential inflation in metric-affine gravity
- Dynamical tidal response of neutron stars: From effective field theory to gravitational waveforms
- Limits of the Rastall--Einstein Equivalence: Matter-Action Compatibility, FLRW Dynamics, and Exceptional Sectors
- Boson star-black hole binaries: initial data and head-on collisions