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April 28, 20260 citationsOpen Access

Continuous Matter Condensation Dynamics: A Potential-Conversion Framework for Cosmology

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TRThomas Riedel

Key Points

  • This work aims to develop a framework linking baryonic matter creation to gravitational potential evolution.
  • Introduces Continuous Matter Condensation Dynamics (CMCD) based on a single physical mechanism.
  • Integrates energy injection into spacetime with the creation of baryonic matter.
  • Presents predictions for gravitational coupling, baryon creation rate, and galaxy dynamics.
  • CMCD offers a self-consistent model with no free parameters.
  • Predicts cosmic acceleration linked directly to baryon production and gravitational strength.
  • Encourages community verification through its falsifiable predictions.

Abstract

This work presents Continuous Matter Condensation Dynamics (CMCD), a cosmological framework based on a single, simple physical mechanism that links the origin of matter directly to the evolution of the gravitational potential. In CMCD, any creation of baryonic matter must be balanced energetically by a corresponding change in the global gravitational potential. This process injects energy into spacetime and naturally produces both matter and expansion, unifying phenomena that standard cosmology treats as separate. The model is self-consistent, contains no free parameters, and is conceptually simple enough to be explained without advanced mathematics. CMED replaces a descriptive cosmology with a mechanistic one: cosmic acceleration, baryon production and emergent gravitational strength come from this underlying principle. The framework has clear, falsifiable predictions for the evolution of the effective gravitational coupling, the baryon creation rate, and the acceleration scale governing galaxy dynamics. The work is released to encourage verification, testing, and falsification by the wider cosmology community.

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Cite This Study

Thomas Riedel (2026) studied this question.

synapsesocial.com/papers/69f04edc727298f751e72d53https://doi.org/10.5281/zenodo.19781379
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