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Epicyclic oscillations of non-slender fluid tori around Kerr black holes

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arxiv 0901.1635 v1 pith:MNKT6IU5 submitted 2009-01-12 astro-ph.SR

classification astro-ph.SR
keywords epicyclicblackmodesnon-slenderoscillationstoriaxisymmetricfluid
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abstract

Considering epicyclic oscillations of pressure-supported perfect fluid tori orbiting Kerr black holes we examine non-geodesic (pressure) effects on the epicyclic modes properties. Using a perturbation method we derive fully general relativistic formulas for eigenfunctions and eigenfrequencies of the radial and vertical epicyclic modes of a slightly non-slender, constant specific angular momentum torus up to second-order accuracy with respect to the torus thickness. The behaviour of the axisymmetric and lowest-order ($m=\pm 1$) non-axisymmetric epicyclic modes is investigated. For an arbitrary black hole spin we find that, in comparison with the (axisymmetric) epicyclic frequencies of free test particles, non-slender tori receive negative pressure corrections and exhibit thus lower frequencies. Our findings are in qualitative agreement with the results of a recent pseudo-Newtonian study of analogous problem defined within the Paczy{\'n}ski-Wiita potential. Implications of our results on the high-frequency QPO models dealing with epicyclic oscillations are addressed.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Testing Quantum-Corrected Black Holes with QPOs Observations: A Study of Particle Dynamics and Accretion Flow

    gr-qc 2025-06 conditional novelty 4.0 of 10

    For a rotating quantum-corrected black hole metric, the paper derives orbital and epicyclic frequencies, simulates the accretion disk, and shows the quantum parameter b can shift QPO frequencies by about 25 percent wh...

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