Local Scalar Emergent Time Model (LSETM): A Covariant Framework for Local Matter Creation and Emergent Time

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Main Author: Loyarte Falabella, Facundo Nicolás
Format: Recurso digital
Language:English
Published: Zenodo 2025
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_version_ 1866901984159727616
author Loyarte Falabella, Facundo Nicolás
author_facet Loyarte Falabella, Facundo Nicolás
contents <p>This document introduces the <strong>Local Scalar Emergent Time Model (LSETM)</strong>, a covariant framework in which scalar-induced matter creation modifies the local proper-time flow according to energy density. The model accounts for several JWST-driven cosmological tensions—such as early massive galaxies, the *Little Red Dots* population, and the high-redshift iron anomaly—through local time dilation and nonlinear mass growth. LSETM remains consistent with local tests (ROCIT) and with Pantheon+ constraints, and yields falsifiable predictions including the “Triple Correlation” and a distinctive redshift-drift signal. A complementary phenomenological toy model supports the need for effective creation rates of ∼10–14 Gyr⁻¹ in galaxies at (z = <strong>9–16.5</strong>).</p> <p> </p> <p><em><strong>Note: </strong>This document is an executive summary of the full <strong>LSETM theoretical framework</strong>. A complete technical manuscript is currently in preparation.</em></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17657199
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Local Scalar Emergent Time Model (LSETM): A Covariant Framework for Local Matter Creation and Emergent Time
Loyarte Falabella, Facundo Nicolás
LSETM
Emergent Time
Local Time Dilation
Scalar-Tensor Theory
Matter Creation
Covariant Cosmology
Iron Paradox
Triple Correlation
Early Galaxy Formation
JWST Anomalies
Cosmology
Theoretical Physics
<p>This document introduces the <strong>Local Scalar Emergent Time Model (LSETM)</strong>, a covariant framework in which scalar-induced matter creation modifies the local proper-time flow according to energy density. The model accounts for several JWST-driven cosmological tensions—such as early massive galaxies, the *Little Red Dots* population, and the high-redshift iron anomaly—through local time dilation and nonlinear mass growth. LSETM remains consistent with local tests (ROCIT) and with Pantheon+ constraints, and yields falsifiable predictions including the “Triple Correlation” and a distinctive redshift-drift signal. A complementary phenomenological toy model supports the need for effective creation rates of ∼10–14 Gyr⁻¹ in galaxies at (z = <strong>9–16.5</strong>).</p> <p> </p> <p><em><strong>Note: </strong>This document is an executive summary of the full <strong>LSETM theoretical framework</strong>. A complete technical manuscript is currently in preparation.</em></p>
title Local Scalar Emergent Time Model (LSETM): A Covariant Framework for Local Matter Creation and Emergent Time
topic LSETM
Emergent Time
Local Time Dilation
Scalar-Tensor Theory
Matter Creation
Covariant Cosmology
Iron Paradox
Triple Correlation
Early Galaxy Formation
JWST Anomalies
Cosmology
Theoretical Physics
url https://doi.org/10.5281/zenodo.17657199