Novel exact black hole solution in Dehnen $\left(1,4,\frac32\right)$ halo thermodynamics, photon circular motion and eikonal quasinormal modes
David Senjaya, Thanaporn Chuensuksan, Supakchai Ponglertsakul

TL;DR
This paper introduces a new exact black hole solution within a Dehnen dark matter halo, analyzing its thermodynamics, photon motion, and quasinormal modes to understand dark matter's impact on black hole properties and observables.
Contribution
It presents the first exact black hole solution in a Dehnen halo and explores its thermodynamic stability, photon sphere modifications, and quasinormal mode behavior.
Findings
Dehnen halo stabilizes Schwarzschild black holes and induces phase transitions.
Dark matter halo alters photon sphere and shadow size.
Null geodesic instability relates to quasinormal modes.
Abstract
Dehnen dark matter halo has been proven to be a valuable model for describing the surface brightness distributions of elliptical galaxies, yet its implications for black hole spacetimes remain largely unexplored. In this work, we construct a novel exact black hole solution embedded in this Dehnen halo and investigate its physical consequences. The influence of the halo on black hole thermodynamics is analyzed through the mass function, entropy, Hawking temperature, heat capacity, and Gibbs free energy, allowing us to assess both local and global thermodynamic stability of the black hole-dark matter system. Our results show that the presence of a Dehnen-type halo not only stabilizes the otherwise thermodynamically unstable Schwarzschild black hole but also induces phase transitions. In addition, we study null geodesics to examine photon motion, the shadow radius and the…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena · Black Holes and Theoretical Physics
