PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 5, 2025The European Physical Journal C9 citationsOpen Access

AdS black hole solution with a dark matter halo surrounded by a cloud of strings

View Full Paper
FAFaizuddin AhmedABAbdelmalek BouzenadaESEdilberto O. Silva

Key Points

  • Photon spheres and circular orbits are influenced by dark matter and cloud of strings, reshaping dynamics.
  • Massless test particles reveal insights into fundamental properties of black holes under dark matter influence.
  • Examination of quasinormal-modes highlights changes in stability diagnostics due to black hole parameters.
  • Interplay of dark matter and cloud of strings alters equation of state and specific heat capacity, impacting thermodynamic behavior.

Abstract

Abstract We derive and analyze a Schwarzschild-like Anti-de Sitter (AdS) (BH) obtained as a static, spherically symmetric solution of Einstein’s equations sourced by a cloud of strings (CoS) and a dark matter (DM) halo modeled by a Dehnen-type density profile. We first study the geodesic motion of massless and massive test particles, emphasizing how the CoS parameter α and the DM halo parameters (ₛ, rₛ) (ρ s, r s) influence photon spheres, circular orbits, the BH shadow, and the innermost stable circular orbit (ISCO). We then examine scalar perturbations via the effective potential and the associated quasinormal-mode (QNM) spectra, showing how α and (ₛ, rₛ) (ρ s, r s) deform oscillation frequencies and damping rates, thereby affecting stability diagnostics. Furthermore, we investigate the thermodynamics in the extended phase space, deriving the Hawking temperature, equation of state, Gibbs free energy, and specific heat capacity, and establishing a consistent first law and Smarr relation with natural work terms for α and (ₛ, rₛ). (ρ s, r s). We find that the interplay between the CoS and the DM halo produces quantitative and sometimes qualitative changes in both dynamical and thermodynamic properties, including shifts in the Hawking–Page transition and heat-capacity divergences, thereby reshaping the phase structure of Schwarzschild–AdS BHs.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Ahmed et al. (2025) studied this question.

synapsesocial.com/papers/694022532d562116f28fc2f4https://doi.org/10.1140/epjc/s10052-025-15113-w
Ask AI
Helpful
Bookmark
Share
View Full Paper