Corrections to Kerr-Newman black hole from Noncommutative Einstein-Maxwell equation
Abstract
In this letter we introduce the noncommutative geometry into the standard Einstein-Hilbert-Maxwell action via the Drinfeld twist and solve the equation of motion pertubatively in the expansion of the noncommutative parameter . The equation of motion, the NC Einstein-Maxwell equation, turns out to be effectively a problem in nonlinear electrodynamics where the energy-momentum tensor obtains correction terms with three Faraday tensors . A solution with nonzero terms turns out to be the Kerr-Newman black hole modified with nonzero and components proportional to , while the electromagnetic potential is the Seiberg-Witten expanded Kerr-Newman potential which introduces a nonzero term proportional to .
Cite
@article{arxiv.2502.03337,
title = {Corrections to Kerr-Newman black hole from Noncommutative Einstein-Maxwell equation},
author = {Filip Požar},
journal= {arXiv preprint arXiv:2502.03337},
year = {2025}
}
Comments
Final version of the paper, after positive review in Phys.Lett.B