Dragging of inertial frames in the composed Kerr-Newman-orbiting-ring system
Shahar Hod

TL;DR
This paper investigates how the frame-dragging effect in a Kerr-Newman black hole with an orbiting ring depends on the black hole's spin, revealing a non-trivial relationship contrary to previous universal findings.
Contribution
It demonstrates that the frame-dragging angular velocity difference depends explicitly on the black hole's spin, challenging the previously suggested universal relation.
Findings
The angular velocity difference $ ext{ΔΩ}_ ext{H}$ depends on the black hole's spin $J_ ext{H}$.
Contrary to prior universal relations, the dependence is explicitly non-trivial.
The study extends the understanding of frame-dragging effects in charged, rotating black hole systems.
Abstract
The dragging of inertial frames by an orbiting object implies that the horizon angular velocity of a central black hole in a composed black-hole-orbiting-ring system is no longer related to its angular-momentum by the familiar vacuum functional relation (here are respectively the mass and normalized area of the central spinning black hole). Using a continuity argument, it has recently been revealed that the composed Kerr-ring system is characterized by the universal (that is, spin-{\it independent}) relation , where are respectively the radius of the ring and its…
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Taxonomy
TopicsSpace Satellite Systems and Control · Planetary Science and Exploration · Astro and Planetary Science
