MSFCM Paper II: Baryon-Heavy Lens Derivation of the Mass-to-Flux Coherence Mechanism and Cosmological Dilution

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Main Author: Martini, Ariel Fernando
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author Martini, Ariel Fernando
author_facet Martini, Ariel Fernando
contents <p>We derive the Mass-to-Flux Coherence Mechanism (MSFCM) for baryon-heavy gravitational lenses using the Bondi-Hoyle-Lyttleton (BHL) accretion framework. The coherence factor C is shown to evolve from C~0 at early epochs to C=1 at z~0.3 following a three-regime cosmological dilution (F7D). A null test against MOND confirms that the MSFCM signal cannot be reproduced by modified gravity scenarios (F7C). Intended for submission to MNRAS as a regular paper.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20192188
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle MSFCM Paper II: Baryon-Heavy Lens Derivation of the Mass-to-Flux Coherence Mechanism and Cosmological Dilution
Martini, Ariel Fernando
gravitational lensing, dark matter, MSFCM, MOND, BHL accretion, coherence factor, cosmological dilution, mass-to-flux
<p>We derive the Mass-to-Flux Coherence Mechanism (MSFCM) for baryon-heavy gravitational lenses using the Bondi-Hoyle-Lyttleton (BHL) accretion framework. The coherence factor C is shown to evolve from C~0 at early epochs to C=1 at z~0.3 following a three-regime cosmological dilution (F7D). A null test against MOND confirms that the MSFCM signal cannot be reproduced by modified gravity scenarios (F7C). Intended for submission to MNRAS as a regular paper.</p>
title MSFCM Paper II: Baryon-Heavy Lens Derivation of the Mass-to-Flux Coherence Mechanism and Cosmological Dilution
topic gravitational lensing, dark matter, MSFCM, MOND, BHL accretion, coherence factor, cosmological dilution, mass-to-flux
url https://doi.org/10.5281/zenodo.20192188