The paper derives Hawking temperatures, particle densities, greybody bounds, and evaporation lifetimes for two bumblebee black hole models, and asserts very tight astrophysical constraints on the Lorentz-violating parameters ℓ and X.
Hawking radiation by spherically-symmetric static black holes for all spins: Teukolsky equations and potentials,
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How does non-metricity affect particle creation and evaporation in bumblebee gravity?
The paper derives Hawking temperatures, particle densities, greybody bounds, and evaporation lifetimes for two bumblebee black hole models, and asserts very tight astrophysical constraints on the Lorentz-violating parameters ℓ and X.