MMS-A1: Entropy-Driven Expansion

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Main Author: Spencer, Atheen
Format: Recurso digital
Language:English
Published: Zenodo 2026
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_version_ 1866901698152235008
author Spencer, Atheen
author_facet Spencer, Atheen
contents <h1>Entropy-Driven Expansion</h1> <h2>A Thermodynamic Framework for Cosmic Acceleration</h2> <p>This paper proposes a new thermodynamic interpretation of cosmic acceleration. Instead of treating dark energy as a separate component of the universe, we explore the possibility that the accelerated expansion arises naturally from the continuous production of entropy within cosmic structures. Drawing on developments in thermodynamic gravity, information theory, black hole thermodynamics and the statistical mechanics of spacetime, we present a framework in which entropy growth generates an effective negative pressure that contributes to cosmic expansion.</p> <p>We outline how this can reproduce key features of the standard cosmological model, propose several testable observational signatures and identify falsifiable predictions for upcoming missions such as Euclid, Roman, LSST and LISA.</p> <p>This work reframes cosmic acceleration as an emergent thermodynamic phenomenon and provides a pathway for integrating gravitational dynamics with entropy, information flow and the arrow of time.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18157696
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle MMS-A1: Entropy-Driven Expansion
Spencer, Atheen
entropy
cosmology
dark energy
emergent gravity
expansion of the universe
modified Friedmann equation
cosmic acceleration
information theory
theoretical physics
modal media research
<h1>Entropy-Driven Expansion</h1> <h2>A Thermodynamic Framework for Cosmic Acceleration</h2> <p>This paper proposes a new thermodynamic interpretation of cosmic acceleration. Instead of treating dark energy as a separate component of the universe, we explore the possibility that the accelerated expansion arises naturally from the continuous production of entropy within cosmic structures. Drawing on developments in thermodynamic gravity, information theory, black hole thermodynamics and the statistical mechanics of spacetime, we present a framework in which entropy growth generates an effective negative pressure that contributes to cosmic expansion.</p> <p>We outline how this can reproduce key features of the standard cosmological model, propose several testable observational signatures and identify falsifiable predictions for upcoming missions such as Euclid, Roman, LSST and LISA.</p> <p>This work reframes cosmic acceleration as an emergent thermodynamic phenomenon and provides a pathway for integrating gravitational dynamics with entropy, information flow and the arrow of time.</p>
title MMS-A1: Entropy-Driven Expansion
topic entropy
cosmology
dark energy
emergent gravity
expansion of the universe
modified Friedmann equation
cosmic acceleration
information theory
theoretical physics
modal media research
url https://doi.org/10.5281/zenodo.18157696