Black Hole Entropy Corrections from Conditional Annihilation States

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Autore principale: Zermeno, Ernest Darell
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Zermeno, Ernest Darell
author_facet Zermeno, Ernest Darell
contents <p>This paper introduces a structural correction to black hole entropy arising from conditional matter-antimatter annihilation. Building on a categorical framework where annihilation occurs only under perfect internal alignment, we show that the resulting scalar field <span><span>zz</span><span><span><span>z</span></span></span></span> contributes an additional entropy term scaling inversely with black hole mass. This correction becomes dominant below a critical mass <span><span>Mcrit∼10−46M_{\text{crit}} \sim 10^{-46}</span><span><span><span><span>M</span><span><span><span><span><span><span><span>crit</span></span></span></span><span></span></span></span></span></span><span>∼</span></span><span><span>1</span><span>0<span><span><span><span><span><span>−46</span></span></span></span></span></span></span></span></span></span> kg, halting Hawking evaporation and leaving stable remnants. The framework naturally resolves the black hole information paradox through structural storage, predicts modified evaporation spectra, and identifies sub-Planckian remnants as dark matter candidates. All Standard Model symmetries are preserved, and observational signatures are quantified for future detection. This work establishes a new fundamental scale in black hole thermodynamics and offers a minimal yet falsifiable path to quantum gravity.</p>
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id zenodo_https___doi_org_10_5281_zenodo_15712282
institution Zenodo
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publishDate 2025
publisher Zenodo
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spellingShingle Black Hole Entropy Corrections from Conditional Annihilation States
Zermeno, Ernest Darell
black hole entropy, conditional annihilation, scalar field, information paradox, quantum gravity, entropy corrections, stable remnants
<p>This paper introduces a structural correction to black hole entropy arising from conditional matter-antimatter annihilation. Building on a categorical framework where annihilation occurs only under perfect internal alignment, we show that the resulting scalar field <span><span>zz</span><span><span><span>z</span></span></span></span> contributes an additional entropy term scaling inversely with black hole mass. This correction becomes dominant below a critical mass <span><span>Mcrit∼10−46M_{\text{crit}} \sim 10^{-46}</span><span><span><span><span>M</span><span><span><span><span><span><span><span>crit</span></span></span></span><span></span></span></span></span></span><span>∼</span></span><span><span>1</span><span>0<span><span><span><span><span><span>−46</span></span></span></span></span></span></span></span></span></span> kg, halting Hawking evaporation and leaving stable remnants. The framework naturally resolves the black hole information paradox through structural storage, predicts modified evaporation spectra, and identifies sub-Planckian remnants as dark matter candidates. All Standard Model symmetries are preserved, and observational signatures are quantified for future detection. This work establishes a new fundamental scale in black hole thermodynamics and offers a minimal yet falsifiable path to quantum gravity.</p>
title Black Hole Entropy Corrections from Conditional Annihilation States
topic black hole entropy, conditional annihilation, scalar field, information paradox, quantum gravity, entropy corrections, stable remnants
url https://doi.org/10.5281/zenodo.15712282