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June 3, 20260 citationsOpen Access

Relational Quantum Foam: Falsification Model for Galactic Rotation Curves in High-Redshift

The Relational Quantum Foam: A Predictive Falsification Model for High-Redshift Galactic Rotation Curves

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BGBrendan Georgeson

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Overview

Randomized trial predicts rotation curve transitions in high-redshift galaxies, suggesting new insights into dark matter.

Key Points

  • This research aims to test the Relational Quantum Foam framework by predicting where high-redshift galaxies deviate from flat rotation curves.
  • Utilized observational data from JWST and ALMA for two high-redshift galaxies (Big Wheel at z = 3.25 and REBELS-25 at z = 7.31)
  • Calculated spatial boundaries for rotation curve transitions based on the RQF model and compared these with predictions from ΛCDM models.
  • Developed a falsification matrix for incoming kinematic data from deep-space observations.
  • Identified specific critical radius values where the rotation curves transition into a Keplerian decline.
  • Projected the elastic, solid-state phase transition of dark matter based on early universe conditions and cosmic expansion.
  • Distinguished RQF predictions from chaotic halo assembly forecasts in standard cosmological models.
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Brendan Georgeson (2026) studied this question.

synapsesocial.com/papers/6a1fc58bdee9eb8c0dce6f7ehttps://doi.org/10.5281/zenodo.20499392
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