Shadows and quasinormal modes of a charged non-commutative black hole by different methods
arXiv:2304.07952 · doi:10.1140/epjp/s13360-023-03978-3
Abstract
In this paper, we calculated the quasinormal modes (QNMs) of a charged non-commutative black hole in scalar, electromagnetic and gravitational fields by three methods. We gave the influence of non-commutative parameter and charge on QNMs in different fields. Thereafter, we calculated the shadow radius of the black hole and provided the valid range of and using the constraints on the shadow radius of and from the Event Horizon Telescope (EHT). In addition, we estimated the ``relative deviation'' of the shadow radius () between non-commutative spacetime and commutative spacetime. We found that the maximum values of decreases with the increase of charge . In other words, the non-commutativity of spacetime becomes harder to distinguish as the charge of the black hole increases.
25 pages, 12 figures
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