A Singularity-Free Geometric Framework for Black Holes, Cosmology, and Quantum Gravity (Preprint)

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Autore principale: Bandor, Ali
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Bandor, Ali
author_facet Bandor, Ali
contents <p>This preprint presents the Asymptotic Structure Model (ASM), a novel singularity-free extension of general relativity. ASM modifies the Schwarzschild metric near the Planck scale by introducing an asymptotic core function, eliminating curvature singularities without requiring exotic matter.</p> <p>The model predicts observational deviations from classical GR, including a 5% smaller black hole shadow and a 13% lower ringdown frequency after mergers. ASM also generalizes to cosmology, replacing the Big Bang singularity with an asymptotically flat initial state and enabling consistent quantum field propagation throughout spacetime.</p> <p>ASM bridges general relativity with both loop quantum gravity and string theory via the introduction of a minimal geometric length scale ε ~ lₚ (Planck length), while remaining consistent with all classical energy conditions.</p> <p>This work is authored by Ali Bandor and assisted by ChatGPT (OpenAI). It is released under the Creative Commons Attribution 4.0 (CC BY 4.0) license.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15093033
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle A Singularity-Free Geometric Framework for Black Holes, Cosmology, and Quantum Gravity (Preprint)
Bandor, Ali
General Relativity
Black Holes
Singularity-Free Models
Quantum Gravity
Loop Quantum Gravity
String Theory
Cosmology
Event Horizon
<p>This preprint presents the Asymptotic Structure Model (ASM), a novel singularity-free extension of general relativity. ASM modifies the Schwarzschild metric near the Planck scale by introducing an asymptotic core function, eliminating curvature singularities without requiring exotic matter.</p> <p>The model predicts observational deviations from classical GR, including a 5% smaller black hole shadow and a 13% lower ringdown frequency after mergers. ASM also generalizes to cosmology, replacing the Big Bang singularity with an asymptotically flat initial state and enabling consistent quantum field propagation throughout spacetime.</p> <p>ASM bridges general relativity with both loop quantum gravity and string theory via the introduction of a minimal geometric length scale ε ~ lₚ (Planck length), while remaining consistent with all classical energy conditions.</p> <p>This work is authored by Ali Bandor and assisted by ChatGPT (OpenAI). It is released under the Creative Commons Attribution 4.0 (CC BY 4.0) license.</p>
title A Singularity-Free Geometric Framework for Black Holes, Cosmology, and Quantum Gravity (Preprint)
topic General Relativity
Black Holes
Singularity-Free Models
Quantum Gravity
Loop Quantum Gravity
String Theory
Cosmology
Event Horizon
url https://doi.org/10.5281/zenodo.15093033