Published July 21, 2026 | Version 1.0

Sonoluminescence as a Laboratory Analogue of Gravity-First Stellar Node Collapse or path to stable fusion

Authors/Creators

Description

This white paper develops a direct mathematical correspondence between acoustically driven sonoluminescent bubble collapse and gravity-driven stellar node collapse within the speculative RBFL/RBFT framework. The two phenomena are not claimed to involve the same physical wave: acoustic pressure is a mechanical disturbance requiring a liquid medium, while stellar gravity is mass-sourced and acts through vacuum. Their proposed connection lies in a shared dynamical structure: coherent organisation, localized node formation, competition between inward drive and support, nonlinear collapse, baryonic compression, heating, and radiation. Sonoluminescence is presented as a controlled terrestrial analogue through which the node-collapse mathematics may be tested, not as experimental proof of the RBFL gravity law. 

RBFL
Record URL: https://zenodo.org/records/20019586
DOI URL: https://doi.org/10.5281/zenodo.20019586

RBFT v45: A Reproducible 3D Side-View Phase-Region Test in Gaia Wide Binaries
https://doi.org/10.5281/zenodo.20132680
https://zenodo.org/records/20132680

Haye, L. S. (2026). RBFL SPARC Reproducibility Package: Fixed-Law Phase-State Detection and Baryonic Structure Prediction. Zenodo. https://doi.org/10.5281/zenodo.20595815

website rbfl.link

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The_Buoyant_Node_Bridge_RBFL_Reframed_Physical_Fields_Edition.pdf

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Additional titles

Alternative title
RBFL bridge to stable fusion 0g

Related works

Is supplement to
Preprint: https://doi.org/10.5281/zenodo.20019586 (Other)

Software

Repository URL
https://rbfl.link