A newly constructed rotating Hernquist-halo black hole is shown to have a larger horizon, lower temperature, higher entropy, and slower evaporation than Kerr.
Gravitational field of a spinning mass as an example of algebraically special metrics,
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A rotating black hole in a Hernquist dark matter halo produces enlarged shadows and enhanced lensing, bounding the halo parameter to ~0.005 from EHT data and ~0.02 from Einstein ring data.
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A rotating black hole in a Hernquist dark matter halo: horizon geometry, thermodynamics, and quantum emission
A newly constructed rotating Hernquist-halo black hole is shown to have a larger horizon, lower temperature, higher entropy, and slower evaporation than Kerr.
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Shadows and lensing signatures of a rotating black hole in a Hernquist dark matter halo
A rotating black hole in a Hernquist dark matter halo produces enlarged shadows and enhanced lensing, bounding the halo parameter to ~0.005 from EHT data and ~0.02 from Einstein ring data.