Noncommutative parameter θ and scalar mass μ exert opposing influences on quasinormal modes and greybody factors in this modified black hole, with stability confirmed and extreme cases approaching classical Schwarzschild values at high mass.
Properties of an axisymmetric Lorentzian non-commutative black hole
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Massive scalar field perturbations in noncommutative-geometry-inspired Schwarzschild black hole
Noncommutative parameter θ and scalar mass μ exert opposing influences on quasinormal modes and greybody factors in this modified black hole, with stability confirmed and extreme cases approaching classical Schwarzschild values at high mass.