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

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Autor principal: Loyarte Falabella, Facundo Nicolás
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author Loyarte Falabella, Facundo Nicolás
author_facet Loyarte Falabella, Facundo Nicolás
contents <p><em><strong>Version 11 — Updated Release</strong></em></p> <p><em>This revision strengthens the kinematic validation of the framework by replacing the intermediate-redshift case HZ4 (z ≃ 5.5) with the more definitive Cosmic Dawn disk REBELS-25 at z = 7.31 (Rowland et al. 2024). </em></p> <p> </p> <p>The following document presents a unified approach to solve current cosmological tensions through the <strong>Local Scalar Emergent Time Model (LSETM)</strong>, a covariant framework in which a sectorized scalar coupling induces effective matter creation that locally modifies the proper-time flow within the dark sector.</p> <p>This model provides a possible explanation for the hubble tension and several JWST-related anomalies—such as the early emergence of massive galaxies, the <em>Little Red Dots</em> population, and the high-redshift iron abundance—via accelerated assembly bias (gravitational catalysis) and nonlinear mass growth.</p> <p>LSETM is consistent with local tests (ROCIT) and with Pantheon+ data, leading to falsifiable predictions, including a characteristic “Triple Correlation” and a distinctive redshift-drift signal. A complementary phenomenological toy model further indicates the need for effective creation rates of order ∼ 11.9 Gyr⁻¹ in galaxies at redshifts z ≈ 9–16.5 to reproduce the observed anomalies.</p> <p> </p> <p><em><strong>Note: </strong>This manuscript represents preliminary work. A complete and extended version of the LSETM framework, including detailed microphysical constraints and full parameter fits, remains under development. </em></p>
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publishDate 2026
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
Scalar-Tensor Theory
Matter Creation
Covariant Cosmology
Iron Paradox
Triple Correlation
Early Galaxy Formation
JWST Anomalies
Cosmology
Theoretical Physics
Dark Sector Coupling
Non Conservative Dark Matter
Hubble Tension
<p><em><strong>Version 11 — Updated Release</strong></em></p> <p><em>This revision strengthens the kinematic validation of the framework by replacing the intermediate-redshift case HZ4 (z ≃ 5.5) with the more definitive Cosmic Dawn disk REBELS-25 at z = 7.31 (Rowland et al. 2024). </em></p> <p> </p> <p>The following document presents a unified approach to solve current cosmological tensions through the <strong>Local Scalar Emergent Time Model (LSETM)</strong>, a covariant framework in which a sectorized scalar coupling induces effective matter creation that locally modifies the proper-time flow within the dark sector.</p> <p>This model provides a possible explanation for the hubble tension and several JWST-related anomalies—such as the early emergence of massive galaxies, the <em>Little Red Dots</em> population, and the high-redshift iron abundance—via accelerated assembly bias (gravitational catalysis) and nonlinear mass growth.</p> <p>LSETM is consistent with local tests (ROCIT) and with Pantheon+ data, leading to falsifiable predictions, including a characteristic “Triple Correlation” and a distinctive redshift-drift signal. A complementary phenomenological toy model further indicates the need for effective creation rates of order ∼ 11.9 Gyr⁻¹ in galaxies at redshifts z ≈ 9–16.5 to reproduce the observed anomalies.</p> <p> </p> <p><em><strong>Note: </strong>This manuscript represents preliminary work. A complete and extended version of the LSETM framework, including detailed microphysical constraints and full parameter fits, remains under development. </em></p>
title Local Scalar Emergent Time Model (LSETM): A Covariant Framework for Local Matter Creation and Emergent Time
topic LSETM
Emergent Time
Scalar-Tensor Theory
Matter Creation
Covariant Cosmology
Iron Paradox
Triple Correlation
Early Galaxy Formation
JWST Anomalies
Cosmology
Theoretical Physics
Dark Sector Coupling
Non Conservative Dark Matter
Hubble Tension
url https://doi.org/10.5281/zenodo.18119389