A study on the effects of the Kazakov–Solodukhin black hole's quantum deformation

This paper investigates how the quantum deformation of the Kazakov–Solodukhin black hole influences the surrounding spacetime, with particular emphasis on modifications to the geodesic structure. By deriving the geodesic equations, we analyze the motion of particles and light, identify the positions of the event horizons, and explore the trajectories of time-like and null particles in a quantum-corrected black hole background. In addition, we study the critical points of the effective potential, the photon sphere, the black hole shadow, and the turnaround radius. We further evaluate the stability of these trajectories, using the Lyapunov exponent to scrutinize the behavior of particle orbits around black holes.

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Publication Details

Journal
Advances in Physics Astronomy Astrophysics and Particle Physics
Published
2026-09-24
DOI
https://doi.org/10.1080/29940842.2026.2714752
Citations
1
Primary Topic
Astrophysical Phenomena and Observations
Type
article
Field-Weighted Citation Impact
3.95
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article

A study on the effects of the Kazakov–Solodukhin black hole's quantum deformation

Indrajit Halder
1 citations
Advances in Physics Astronomy Astrophysics and Particle Physics
Astrophysical Phenomena and Observations
3.95
article

A study on the effects of the Kazakov–Solodukhin black hole's quantum deformation

Indrajit Halder
article en
1 citations

Abstract

This paper investigates how the quantum deformation of the Kazakov–Solodukhin black hole influences the surrounding spacetime, with particular emphasis on modifications to the geodesic structure. By deriving the geodesic equations, we analyze the motion of particles and light, identify the positions of the event horizons, and explore the trajectories of time-like and null particles in a quantum-corrected black hole background. In addition, we study the critical points of the effective potential, the photon sphere, the black hole shadow, and the turnaround radius. We further evaluate the stability of these trajectories, using the Lyapunov exponent to scrutinize the behavior of particle orbits around black holes.

Advances in Physics Astronomy Astrophysics and Particle PhysicsVol. 2(1)
Kanchrapara College (IN)
Openalex Percentile: Top 5%
Astrophysical Phenomena and Observations
3.95
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