The holographic Einstein ring radius of the quantum-corrected AdS-Reissner-Nordstrom black hole in Kiselev spacetime decreases with the quantum correction, equation of state, temperature, and chemical potential, increases with the cosmological fluid parameter, and matches the geometric photon ring…
Holographic image features of an AdS black hole in Einstein-power-Yang-Mills gravity
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
By utilizing the AdS/CFT correspondence, we investigate the holographic image of an AdS black hole in Einstein-power-Yang-Mills gravity. The AdS boundary hosts a Gaussian oscillation source, which induces a lensed response on the opposite side of the boundary during propagation through bulk spacetime. The optical system assists observers at the north pole to continuously capture holographic images that show an axisymmetric bright ring known as the Einstein ring. As the observation position shifted, the bright ring gradually transformed into a luminous arc and eventually transitioned into a light point. Simultaneously, we examine the impact of variations in relevant physical quantity on the ring, and present the corresponding brightness curve. The results indicate that as the temperature $T$ and nonlinear Yang Mills charge parameter $q$ increase, the ring radius also increases, while an increase in the chemical potential $u$ leads to a decrease. However, the peak brightness curve of the ring invariably decreases as the values of $T$, $u$, and $q$ increase, albeit to varying degrees. Upon comparing the outcomes of geometric optics, it can be observed that the position of the ring in holography images is consistent with that of the photon ring.
citation-role summary
citation-polarity summary
fields
gr-qc 1years
2025 1verdicts
REJECT 1roles
background 1polarities
unclear 1representative citing papers
citing papers explorer
-
Holographic Einstein Ring of Quantum Corrected AdS-Reissner-Nordstrom Black Holes in Kiselev Spacetime
The holographic Einstein ring radius of the quantum-corrected AdS-Reissner-Nordstrom black hole in Kiselev spacetime decreases with the quantum correction, equation of state, temperature, and chemical potential, increases with the cosmological fluid parameter, and matches the geometric photon ring…