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The Spectroscopy of Kerr-Einstein-Maxwell-Dilaton-Axion: Exact Quasibound States, Scalar Cloud, Horizon's Boson Statistics and Superradiance

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arxiv 2501.08788 v1 pith:UQ45PBFN submitted 2025-01-15 gr-qc

classification gr-qc
keywords holeblackscalarcloudquasiboundexactkerr-emdarotating
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In the present study, we investigate the quasibound states, scalar cloud and superradiance of relativistic scalar fields bound to a rotating black hole in Einstein-Maxwell-Dilaton-Axion theory (Kerr-EMDA). We present the exact eigensolutions of the governing Klein-Gordon equation in the black hole background. By imposing boundary conditions on the quasibound states, we are able to find the exact complex quasibound state frequencies of the corresponding radial wave functions in terms of the confluent Heun polynomial. Considering light scalar field limit of the obtained solution, we investigate the scalar-black hole resonance configuration known as the scalar cloud. In addition, we obtain analytic relation between light scalar mass and black hole spin for scalar cloud. We explore a boson distribution function by linearly expanding the radial wave function near the black hole's event horizon. Moreover, by applying the Damour-Ruffini method, this allows us to calculate the Hawking radiation flux. In the final section, we consider propagating wave in a slowly rotating Kerr-EMDA black hole for bosons having much larger Compton wavelength comparing to the size of rotating black hole. This condition allows us to use the asymptotic matching technique to calculate the amplification factor for scalar fields in the Kerr-EMDA black hole. We present the dependence of amplification factor on black hole parameters by graphical analysis.

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Cited by 4 Pith papers

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

  1. Novel Kerr-Hernquist Black Hole: Quasibound State, Scalar Cloud, Bomb, Superradiant Scattering

    gr-qc 2026-07 conditional novelty 6.0 of 10

    A Kerr–Hernquist black hole preserves a hydrogen-like scalar quasibound spectrum corrected by ρ₀r₀³, which lowers the scalar-cloud mass threshold and suppresses co-rotating superradiant growth while narrowing the ampl...

  2. A Novel Kerr-like Black Hole in a General Double Power Law Dark Matter Environment: Geometry, Spectroscopy, and Energy Extraction

    gr-qc 2026-08 reject novelty 5.0 of 10

    The paper presents a Newman-Janis rotating black hole in a double power law dark matter halo, with analytic scalar spectra, but the claimed singularity removal for gamma <= 2 is not established because the ring singul...

  3. The Spectroscopy of the 2+1 Dimensional Analog Black Hole in Photon-Fluid Model

    gr-qc 2025-09 conditional novelty 5.0 of 10

    For the 2+1D photon-fluid analog black hole, the paper derives exact quasibound states, Hawking radiation, superradiance amplification, and greybody factors, finding superradiance for ̟ < ω < m_l Ω_H.

  4. Tuning A Rotating Black Hole Spectrum with Dark Matter Halo: Quasibound States, Scalar Cloud, Black Hole Bomb and Superradiant Scattering

    gr-qc 2026-06 unverdicted novelty 4.0 of 10

    For a rotating black hole in a Dehnen dark matter halo, the scalar quasibound spectrum is the Kerr hydrogenic spectrum with a halo-shifted effective mass, and the superradiant window narrows through a halo-modified ho...

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