Probing Schwarzschild-like Black Holes in Metric-Affine Bumblebee Gravity with Accretion Disk, Deflection Angle, Greybody Bounds, and Neutrino Propagation
G. Lambiase, L. Mastrototaro, Reggie C. Pantig, Ali Ovgun

TL;DR
This paper investigates how Schwarzschild-like black holes behave in metric-affine bumblebee gravity, analyzing effects on accretion disks, light deflection, greybody radiation, and neutrino propagation to identify observable deviations from general relativity.
Contribution
It introduces a comprehensive analysis of Schwarzschild-like black holes in metric-affine bumblebee gravity, highlighting novel effects on astrophysical phenomena due to the vector field coupling.
Findings
Altered accretion disk behavior in modified gravity
Deviations in light deflection angles from standard predictions
Modified greybody bounds and neutrino trajectories
Abstract
In this paper, we investigate Schwarzschild-like black holes within the framework of metric-affine bumblebee gravity. We explore the implications of such a gravitational setup on various astrophysical phenomena, including the presence of an accretion disk, the deflection angle of light rays, the establishment of greybody bounds, and the propagation of neutrinos. The metric-affine bumblebee gravity theory offers a unique perspective on gravitational interactions by introducing a vector field that couples to spacetime curvature. We analyze the behavior of accretion disks around Schwarzschild-like black holes in this modified gravity scenario, considering the effects of the bumblebee field on the accretion process. Furthermore, we scrutinize the deflection angle of light rays as they traverse the gravitational field, highlighting potential deviations from standard predictions due to the…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Pulsars and Gravitational Waves Research · Astrophysical Phenomena and Observations
