Optical appearance of numerical black hole solutions in higher derivative gravity

Fuente: arXiv
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Autores principales: Cui, Yu-Hao, Guo, Sen, Huang, Yu-Xiang, Liang, Yu, Lin, Kai
Formato: Preprint
Publicado: 2024
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author Cui, Yu-Hao
Guo, Sen
Huang, Yu-Xiang
Liang, Yu
Lin, Kai
author_facet Cui, Yu-Hao
Guo, Sen
Huang, Yu-Xiang
Liang, Yu
Lin, Kai
contents The optical appearance of the numerically black hole solutions within the higher derivative gravity illuminated by an accretion disk context is discussed. We obtain solutions for non-Schwarzschild black holes with r0 = 1, r0 = 2, and r0 = 3. Further analysis of spacetime trajectories reveals properties similar to Schwarzschild black holes, while the r0 = 2 black hole exhibits significant differences. The results reveal the presence of a repulsive potential barrier for the black hole, allowing only particles with energies exceeding a certain threshold to approach it, providing a unique gravitational scenario for non-Schwarzschild black holes. Additionally, the optical images are derived through numerical simulations by discussing the trajectories of photons intheblackholespacetime.The distribution of radiation flux and the effects of gravitational redshift and Doppler shift on the observed radiation flux are considered. Interestingly, previous analyses of the optical appearance of black holes were conducted within the framework of analytic solutions, whereas the analysis of numerical black hole solutions first appears in our analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03387
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optical appearance of numerical black hole solutions in higher derivative gravity
Cui, Yu-Hao
Guo, Sen
Huang, Yu-Xiang
Liang, Yu
Lin, Kai
General Relativity and Quantum Cosmology
The optical appearance of the numerically black hole solutions within the higher derivative gravity illuminated by an accretion disk context is discussed. We obtain solutions for non-Schwarzschild black holes with r0 = 1, r0 = 2, and r0 = 3. Further analysis of spacetime trajectories reveals properties similar to Schwarzschild black holes, while the r0 = 2 black hole exhibits significant differences. The results reveal the presence of a repulsive potential barrier for the black hole, allowing only particles with energies exceeding a certain threshold to approach it, providing a unique gravitational scenario for non-Schwarzschild black holes. Additionally, the optical images are derived through numerical simulations by discussing the trajectories of photons intheblackholespacetime.The distribution of radiation flux and the effects of gravitational redshift and Doppler shift on the observed radiation flux are considered. Interestingly, previous analyses of the optical appearance of black holes were conducted within the framework of analytic solutions, whereas the analysis of numerical black hole solutions first appears in our analysis.
title Optical appearance of numerical black hole solutions in higher derivative gravity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2408.03387