Authors: Naveen Reddy
Abstract: Black holes are fascinating objects that challenge our understanding of the fundamental laws of physics. The interplay between general relativity, which describes gravity as a curvature of spacetime, and quantum mechanics, which governs the behavior of particles at the microscopic level, is of utmost importance in studying black holes. In this paper, we delve into the rich interplay between these two pillars of modern physics and explore their implications for black hole physics. We discuss the current theoretical frameworks, observational evidence, and potential avenues for future research. Additionally, we provide tables and figures that summarize key concepts and findings in this field.
Keywords: General Relativity, Quantum Mechanics, Black Holes, Event Horizon, Singularity, Hawking Radiation, Black Hole Entropy, Information Paradox, Firewall Hypothesis, Quantum Entanglement, String Theory, Loop Quantum Gravity, Gravitational Waves, Black Hole Shadows, Quantum Gravity Effects, Quantum Information, Holography, Astrophysical Signatures.
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