CoreLumen Gravity VI : EFT Closure of Condensate Gravity

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Autore principale: Hwang, Jaegue
Natura: Recurso digital
Pubblicazione: Zenodo 2026
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author Hwang, Jaegue
author_facet Hwang, Jaegue
contents <p>This work presents the effective field theory (EFT) formulation of the<br>CoreLumen condensate gravity framework.</p> <p>Within the CoreLumen program the physical vacuum is interpreted as a<br>condensate medium described by the complex order parameter</p> <p>Ψ = ρ e^{iθ}.</p> <p>In this picture the phase dynamics of the condensate vacuum organizes<br>the gravitational response of spacetime and modifies the effective<br>cosmological behavior at large scales.</p> <p>To connect the condensate gravity framework with cosmological<br>observations, the gravitational dynamics can be described through<br>effective response functions</p> <p>μ(k,z) and Σ(k,z),</p> <p>which respectively characterize the clustering response of gravity<br>and the gravitational lensing response.</p> <p>This paper develops the effective field theory (EFT) formulation of<br>condensate gravity and derives the response framework linking the<br>condensate vacuum sector with cosmological observables.</p> <p>Within the broader CoreLumen research program this work completes<br>the gravitational sector and establishes the theoretical interface<br>between the condensate vacuum theory and the cosmological and<br>observational analyses developed in subsequent papers.</p> <p>This document is released as a Zenodo archival version to record<br>the structural EFT formulation of the CoreLumen condensate gravity<br>framework.</p>
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publishDate 2026
publisher Zenodo
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spellingShingle CoreLumen Gravity VI : EFT Closure of Condensate Gravity
Hwang, Jaegue
CoreLumen
condensate gravity
effective field theory
modified gravity
vacuum condensate
dark energy
gravitational response
cosmology
<p>This work presents the effective field theory (EFT) formulation of the<br>CoreLumen condensate gravity framework.</p> <p>Within the CoreLumen program the physical vacuum is interpreted as a<br>condensate medium described by the complex order parameter</p> <p>Ψ = ρ e^{iθ}.</p> <p>In this picture the phase dynamics of the condensate vacuum organizes<br>the gravitational response of spacetime and modifies the effective<br>cosmological behavior at large scales.</p> <p>To connect the condensate gravity framework with cosmological<br>observations, the gravitational dynamics can be described through<br>effective response functions</p> <p>μ(k,z) and Σ(k,z),</p> <p>which respectively characterize the clustering response of gravity<br>and the gravitational lensing response.</p> <p>This paper develops the effective field theory (EFT) formulation of<br>condensate gravity and derives the response framework linking the<br>condensate vacuum sector with cosmological observables.</p> <p>Within the broader CoreLumen research program this work completes<br>the gravitational sector and establishes the theoretical interface<br>between the condensate vacuum theory and the cosmological and<br>observational analyses developed in subsequent papers.</p> <p>This document is released as a Zenodo archival version to record<br>the structural EFT formulation of the CoreLumen condensate gravity<br>framework.</p>
title CoreLumen Gravity VI : EFT Closure of Condensate Gravity
topic CoreLumen
condensate gravity
effective field theory
modified gravity
vacuum condensate
dark energy
gravitational response
cosmology
url https://doi.org/10.5281/zenodo.19029228