A newly constructed rotating Hernquist-halo black hole is shown to have a larger horizon, lower temperature, higher entropy, and slower evaporation than Kerr.
Planck 2018 results. VI. Cosmological parameters,
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Minimal charged-lepton corrections parameterized by λ and δ reconcile TM2 mixing with LMA and dark-LMA data, yielding allowed ranges, |J_CP| up to 0.13, and m_ee predictions testable in future 0νββ experiments.
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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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Reconciling TM$_2$ Mixing with LMA and Dark-LMA Data based on Minimal Corrections from Charged-Lepton Sector
Minimal charged-lepton corrections parameterized by λ and δ reconcile TM2 mixing with LMA and dark-LMA data, yielding allowed ranges, |J_CP| up to 0.13, and m_ee predictions testable in future 0νββ experiments.