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Grey-body factors of higher dimensional regular black holes in quasi-topological theories

Canonical reference. 91% of citing Pith papers cite this work as background.

16 Pith papers citing it
Background 91% of classified citations
abstract

We study grey body factors and Hawking radiation of higher dimensional regular black holes arising in quasi topological gravity. These spacetimes incorporate infinite curvature corrections that remove the central singularity while preserving an event horizon and a well defined semiclassical description. We show that, for all considered regular black hole models, the transmission of radiation and the corresponding Hawking evaporation are systematically suppressed compared to the singular black hole solutions of General Relativity.

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background 10 method 1

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gr-qc 16

years

2026 16

representative citing papers

Regular Black Holes in Nonlocal Quasitopological Gravity

gr-qc · 2026-07-08 · accept · novelty 7.0

Infinite-derivative completions of quasitopological gravities are ghost-free, avoid strong coupling, and admit exact spherically symmetric vacuum regular black holes obeying a perturbative Birkhoff theorem.

Cosmic Inflation From Regular Black Holes

gr-qc · 2026-04-06 · unverdicted · novelty 7.0

Regular black holes in the bulk of quasi-topological gravity drive a de Sitter inflationary phase on the brane at small scales, with e-fold number set by the ratio of black hole radius to higher-curvature scale.

Scattering of electromagnetic field in quasi-topological gravity

gr-qc · 2026-04-28 · unverdicted · novelty 5.0

Regular black holes in quasi-topological gravity produce shifted electromagnetic absorption spectra and modified photon sphere radii relative to singular Tangherlini solutions, with deviations suppressed as spacetime dimensions increase.

Scattering and Hawking Radiation from Einstein--Euler--Heisenberg--de Sitter Black Holes

gr-qc · 2026-06-02 · unverdicted · novelty 4.0

Numerical scattering calculations for neutral scalar and Dirac fields on Einstein-Euler-Heisenberg-de Sitter black holes show that Euler-Heisenberg coupling raises barriers and shifts transmission frequencies upward while cosmological constant lowers thresholds, with luminosity highly sensitive to t

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Showing 16 of 16 citing papers.