Qindra Core Black Hole Physics Series. Part 3- Papers 35-44 (of 70)..pdf

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Auteur principal: Radhakrishnan Jayaraman
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Langue:anglais
Publié: Zenodo 2025
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author Radhakrishnan Jayaraman
author_facet Radhakrishnan Jayaraman
contents <p>This work belongs to the 56-paper Black Hole Physics Series (Papers 15–70) under the Qindra-Core Theoretical Framework. The series proposes an integrated approach to black hole behavior, unifying general relativity, quantum information theory, horizon resonance, and cosmic-scale information networks. The framework introduces new concepts such as horizon resonance modes, information webs, quantized spin transitions, cosmic memory lattices, and inter-universal information flow. These works collectively form a multi-scale description of black hole dynamics, from micro-horizon structure to cosmological connectivity.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17856139
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Qindra Core Black Hole Physics Series. Part 3- Papers 35-44 (of 70)..pdf
Radhakrishnan Jayaraman
Black Hole Physics, Event Horizon Dynamics, Horizon Resonance, Quantum Gravity, Information Theory, Hawking Radiation, Black Hole Thermodynamics, Spin–Horizon Coupling, Quantum Information, Cosmic Memory, Gravitational Waves, Spacetime Geometry, Holography, Multiverse Models, Resonance Physics, Horizon Quantization, Black Hole Networks, Fundamental Physics, Qindra-Core Framework
Black Hole Information Paradox Entanglement Entropy Quantum Horizons Black Hole Lattices Resonance Structures Spacetime Oscillators Holographic Mapping Quantum Fields in Curved Space Gravitational Wave Astronomy Supermassive Black Holes Horizon Modes Kerr Black Holes Schwarzschild Black Holes Black Hole Evaporation Information Preservation Cosmic Structure Formation Quantum Coherence High-spin Black Holes Magnetic Accretion Fields Nonlocal Information Flow Multiversal Information Channels Black Hole Computation Quantum Resonant States QNM (Quasinormal Modes) Ultra-Deep Cosmology Black Hole Symmetry Breaking Spin Quantization Horizon Degrees of Freedom Vacuum Fluctuation Structure
<p>This work belongs to the 56-paper Black Hole Physics Series (Papers 15–70) under the Qindra-Core Theoretical Framework. The series proposes an integrated approach to black hole behavior, unifying general relativity, quantum information theory, horizon resonance, and cosmic-scale information networks. The framework introduces new concepts such as horizon resonance modes, information webs, quantized spin transitions, cosmic memory lattices, and inter-universal information flow. These works collectively form a multi-scale description of black hole dynamics, from micro-horizon structure to cosmological connectivity.</p>
title Qindra Core Black Hole Physics Series. Part 3- Papers 35-44 (of 70)..pdf
topic Black Hole Physics, Event Horizon Dynamics, Horizon Resonance, Quantum Gravity, Information Theory, Hawking Radiation, Black Hole Thermodynamics, Spin–Horizon Coupling, Quantum Information, Cosmic Memory, Gravitational Waves, Spacetime Geometry, Holography, Multiverse Models, Resonance Physics, Horizon Quantization, Black Hole Networks, Fundamental Physics, Qindra-Core Framework
Black Hole Information Paradox Entanglement Entropy Quantum Horizons Black Hole Lattices Resonance Structures Spacetime Oscillators Holographic Mapping Quantum Fields in Curved Space Gravitational Wave Astronomy Supermassive Black Holes Horizon Modes Kerr Black Holes Schwarzschild Black Holes Black Hole Evaporation Information Preservation Cosmic Structure Formation Quantum Coherence High-spin Black Holes Magnetic Accretion Fields Nonlocal Information Flow Multiversal Information Channels Black Hole Computation Quantum Resonant States QNM (Quasinormal Modes) Ultra-Deep Cosmology Black Hole Symmetry Breaking Spin Quantization Horizon Degrees of Freedom Vacuum Fluctuation Structure
url https://doi.org/10.5281/zenodo.17856139