Electromagnetic Properties of Kerr-Anti-de Sitter Black Holes
Alikram N. Aliev

TL;DR
This paper investigates the electromagnetic characteristics of Kerr-AdS black holes across various dimensions, deriving solutions, analyzing horizon properties, and calculating gyromagnetic ratios, revealing dimension-dependent behaviors and special limits where ratios simplify.
Contribution
It provides analytic solutions for Kerr-Newman-AdS black holes, computes their gyromagnetic ratios in multiple dimensions, and explores the effects of rotation parameters on electromagnetic properties.
Findings
Kerr-Newman-AdS solutions satisfy Einstein-Maxwell equations.
Gyromagnetic ratio g=2 in four dimensions.
Higher dimensions show dimension-dependent gyromagnetic ratios.
Abstract
We examine the electromagnetic properties of Kerr-anti-de Sitter (Kerr-AdS) black holes in four and higher spacetime dimensions. Assuming that the black holes may carry a test electric charge we show that the Killing one-form which represents the difference between the timelike generators in the spacetime and in the reference background can be used as a potential one-form for the associated electromagnetic field. In four dimensions the potential one-form and the Kerr-AdS metric with properly re-scaled mass parameter solve the Einstein-Maxwell equations, thereby resulting in the familiar Kerr-Newman-AdS solution. We solve the quartic equation governing the location of the event horizons of the Kerr-Newman-AdS black holes and present closed analytic expressions for the radii of the horizons. We also compute the gyromagnetic ratio for these black holes and show that it corresponds to g=2…
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