The Hayward Metric from Vacuum Coherence: A Resonance-Based Derivation within RCFT and FCI

Fuente: Zenodo
Salvato in:
Dettagli Bibliografici
Autore principale: Fernandes, Ricardo Miguel Machado
Natura: Recurso digital
Pubblicazione: Zenodo 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866902244164632576
author Fernandes, Ricardo Miguel Machado
author_facet Fernandes, Ricardo Miguel Machado
contents <p>This work presents a resonance-based derivation of a metric that was later identified as the Hayward regular black hole solution. The derivation emerged independently within the framework of the <em>Resonant Coherence Field Theory</em> (RCFT), without prior knowledge of Hayward’s 2006 model. The metric was not chosen phenomenologically but arose organically from first principles describing vacuum coherence and resonant confinement. Only after completing the derivation was it recognized that the resulting form exactly matches Hayward’s regular black hole metric. This accidental convergence provides strong independent validation: a theoretical geometry predicted from vacuum resonance principles perfectly reproduces a known regular solution from general relativity. Within the broader RCFT and <em>Fundamental Conservation of Information</em> (FCI) frameworks, the correspondence offers a microphysical interpretation of the Hayward parameters and supports information-preserving gravitational collapse models.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17316800
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle The Hayward Metric from Vacuum Coherence: A Resonance-Based Derivation within RCFT and FCI
Fernandes, Ricardo Miguel Machado
Hayward metric
Regular black holes
Quantum gravity
Vacuum coherence
Resonant confinement
Singularity resolution
Resonant Coherence Field Theory (RCFT)
Fundamental Conservation of Information (FCI)
Coherent vacuum dynamics
Information conservation
Containment field theory
<p>This work presents a resonance-based derivation of a metric that was later identified as the Hayward regular black hole solution. The derivation emerged independently within the framework of the <em>Resonant Coherence Field Theory</em> (RCFT), without prior knowledge of Hayward’s 2006 model. The metric was not chosen phenomenologically but arose organically from first principles describing vacuum coherence and resonant confinement. Only after completing the derivation was it recognized that the resulting form exactly matches Hayward’s regular black hole metric. This accidental convergence provides strong independent validation: a theoretical geometry predicted from vacuum resonance principles perfectly reproduces a known regular solution from general relativity. Within the broader RCFT and <em>Fundamental Conservation of Information</em> (FCI) frameworks, the correspondence offers a microphysical interpretation of the Hayward parameters and supports information-preserving gravitational collapse models.</p>
title The Hayward Metric from Vacuum Coherence: A Resonance-Based Derivation within RCFT and FCI
topic Hayward metric
Regular black holes
Quantum gravity
Vacuum coherence
Resonant confinement
Singularity resolution
Resonant Coherence Field Theory (RCFT)
Fundamental Conservation of Information (FCI)
Coherent vacuum dynamics
Information conservation
Containment field theory
url https://doi.org/10.5281/zenodo.17316800