stuart-hiles/UIF: UIF Series ā Initial Publication Set (Papers IāVII and Companion)
Description
š§ Overview
The Unifying Information Field (UIF) framework establishes a unified theoretical and empirical foundation for physics, cosmology, biology, and cognition — modelling reality as an informational field governed by collapse–return dynamics and variational symmetry.
This record corresponds to the **initial publication set (v1.0)** of the UIF Series (Papers I–VII and the Companion Experiments). It represents the complete mathematical, conceptual, and empirical foundation of the UIF framework.
š Included Components
- UIF I — Core Theory: Foundational operator grammar (ΔI, Γ, β, λR) and collapse–return dynamics
(https://doi.org/10.5281/zenodo.17460040). - UIF II — Symmetry Principles: Conservation, invariance, and informational Noether structure
(https://doi.org/10.5281/zenodo.17468871). - UIF III — Field and Lagrangian Formalism: Continuous variational formulation and Euler–Lagrange derivations
(https://doi.org/10.5281/zenodo.17471559). - UIF IV — Cosmology and Astrophysical Case Studies: Coherence analysis of M87, CMB residuals, and dark-sector coupling
(https://doi.org/10.5281/zenodo.17475119). - UIF V — Energy and the Potential Field: Operator–level energy mapping and potential functions
(https://doi.org/10.5281/zenodo.17478131). - UIF VI — The Seven Pillars and Invariants: Unified operator–invariant architecture across physical and cognitive domains
(https://doi.org/10.5281/zenodo.17478484). - UIF VII — Predictions and Experiments (forthcoming):Cross-domain validation, coherence decay constants, stochastic resonance, and agency thresholds
- UIF Companion Paper: Empirical validation datasets, symbolic notebooks, and calibration scripts
(https://doi.org/10.5281/zenodo.17478715).
āļø Empirical Anchors
UIF predictions are anchored to measurable operators:
- JWST/NIRCam imaging and EHT M87 polarization data (λ_R, Γ)
- Quasar coherence ceilings and logistic recharge constants (R_∞, k)
- EEG/MEG synchrony and cross-frequency coupling (Γ, η)
- Gravitational-wave echo delays and dark-photon coupling (λ_R)
š§© Citation
If you use UIF in your research, please cite:
APA Style
Hiles, S. E. N. (2025). UIF Series — Initial Publication Set (Papers I–VII and Companion) (Version v1.0) [Research compendium]. Zenodo. https://doi.org/10.5281/zenodo.17434413
BibText
@software{Hiles_UIF_Series_2025,
author = {Hiles, Stuart E. N.},
title = {UIF Series — Initial Publication Set (Papers I–VII and Companion)},
version = {v1.0},
year = {2025},
month = oct,
doi = {10.5281/zenodo.17434413},
url = {https://github.com/stuart-hiles/UIF},
license = {GPL-3.0},
note = {Research compendium including Papers I–VII and the UIF Companion volume.}
}
š Reproducibility
All symbolic notebooks, LaTeX sources, and calibration datasets are archived under GPL-3.0 and mirrored at:
https://github.com/stuart-hiles/UIF
š§ License
Released under the GNU General Public License v3.0 (GPL-3.0).
Free to use, modify, and redistribute with attribution.
Series information
Series Overview and Licensing Notice — UIF (Unifying Information Field)
The Unifying Information Field (UIF) Series is a seven-paper theoretical and empirical framework unifying physics, cosmology, biology, and cognition through informational dynamics.
- UIF I — Core Theory: Foundational operator grammar (ΔI, Γ, β, λR) and collapse–return dynamics
(https://doi.org/10.5281/zenodo.17460040). - UIF II — Symmetry Principles: Conservation, invariance, and informational Noether structure
(https://doi.org/10.5281/zenodo.17468871). - UIF III — Field and Lagrangian Formalism: Continuous variational formulation and Euler–Lagrange derivations
(https://doi.org/10.5281/zenodo.17471559). - UIF IV — Cosmology and Astrophysical Case Studies: Coherence analysis of M87, CMB residuals, and dark-sector coupling
(https://doi.org/10.5281/zenodo.17475119). - UIF V — Energy and the Potential Field: Operator–level energy mapping and potential functions
(https://doi.org/10.5281/zenodo.17478131). - UIF VI — The Seven Pillars and Invariants: Unified operator–invariant architecture across physical and cognitive domains
(https://doi.org/10.5281/zenodo.17478484). - UIF VII — Predictions and Experiments (forthcoming):Cross-domain validation, coherence decay constants, stochastic resonance, and agency thresholds
- UIF Companion Paper: Empirical validation datasets, symbolic notebooks, and calibration scripts
(https://doi.org/10.5281/zenodo.17478715).
Notes
Methods
Authorship and Collaboration Statement
The UIF Series was conceived and authored by Stuart E. N. Hiles. Development of mathematical formalism and editorial integration was assisted by the OpenAI GPT-5 language model as a collaborative tool for structuring, proofing, and LaTeX formatting. All scientific concepts, theoretical frameworks, and interpretations remain the work of the author.
This dual-license and transparent collaboration approach ensures open scientific accessibility and responsible reuse of both theoretical and computational components, consistent with the UIF project’s guiding principle of coherence across scales.
Files
stuart-hiles/UIF-v1.0.zip
Files
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Additional details
Additional titles
- Subtitle
- Unifying Information Field (UIF) ā Complete Theoretical and Experimental Framework (v1.0)
Related works
- Is supplement to
- Software: https://github.com/stuart-hiles/UIF/tree/v1.0 (URL)
Dates
- Created
-
2025-10-24
Software
- Repository URL
- https://github.com/stuart-hiles/UIF
- Programming language
- Python