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Theory of Information Speed: Proving that the speed of light (c) is a constraint of the electromagnetic information channel, not a universal physical limit. Includes 8 fundamental insights, mathematical formalization, experimental predictions, and Python simulation library.

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This repository contains a comprehensive theoretical framework consisting of seven fundamental insights that challenge our understanding of physical measurements, the limits of knowledge, and the structure of reality itself.

Central Thesis: The speed of light (c) is not a universal physical limit, but rather a constraint of the electromagnetic (EM) information channel. All our measurements are structurally limited by the fact that all energy transitions in detectors are electromagnetic processes.


📚 Seven Fundamental Insights

1. Multiple Information Spaces

Different information spaces I_k exist, each with its own maximum speed Vmax_k:

  • I_EM: Electromagnetic space (Vmax = c ≈ 3×10⁸ m/s)
  • I_GW: Gravitational space (Vmax = c, measured via EM)
  • I_X: Hypothetical spaces (Vmax > c)
  • I_0: Source (pre-spatial, pre-temporal)

Read more: Multiple Information Spaces

2. Measurement as Projection

All our measurement instruments use electromagnetic interactions, creating a fundamental filter:

v_measured = min(v_real, c)

Even if v_real >> c, we measure v ≈ c because the measurement channel is limited by c.

Read more: Measurement as Projection

3. Vacuum Phase Transitions

At sufficiently high energies, the vacuum may transition to a new state:

E < E_threshold:  Normal vacuum (Vmax = c)
E > E_threshold:  Modified vacuum (Vmax > c)

Read more: Vacuum Phase Transitions

4. Universality of Formulas

All relativistic formulas are universal with Vmax as a parameter:

Simply replace: c → Vmax_k in any relativistic formula

Experiments prove the formulas in I_EM, not the universality of c.

Read more: Universality of Formulas

5. EM Confinement

All energy transitions in detectors are electromagnetic processes:

Measurement = Energy transition in detector
Energy transition = EM process (atomic levels, ionization, photoeffect)
→ All measurements are EM-based
→ Impossible to measure outside EM!

Read more: EM Confinement

6. Contact Points

A contact point is a physical system that "lives" simultaneously in two information spaces and facilitates energy transition:

E_X → [Contact Point, coupling g] → E_EM

Accessibility hierarchy:

  • Strong (g ~ 1): EM ↔ EM - Directly accessible
  • Medium (g ~ 10⁻⁵): Weak ↔ EM - Neutrino detectors
  • Weak (g ~ 10⁻³⁸): Gravity ↔ EM - LIGO
  • Very weak (g < 10⁻⁴⁵): Dark ↔ EM - Not yet detected

Read more: Contact Points

7. Scale Incompatibility

Information spaces are incompatible not only by speed (Vmax), but also by:

  1. Scale (λ): 10⁻³⁵ m (Planck) → 10⁻¹⁰ m (atoms) → 10⁰ m (us) → 10²⁶ m (cosmos)
  2. Concentration (ρ): 10⁻⁷⁸ bits/m³ (cosmos) → 10²⁹ bits/m³ (atoms)
  3. Topology (T): Local (point charges) ≠ Extended (atoms) ≠ Global (cosmological fields)

Effective coupling:

g_eff = g_0 × exp(-Δλ/λ_ref) × exp(-|log(ρ_X/ρ_EM)|) × f_T

Read more: Scale Incompatibility


📂 Repository Structure

Information-Speed-Theory/
├── README.md                    # This file
├── bg/                          # Bulgarian (original)
│   ├── core/                    # Core research documents
│   │   ├── ИзследванеТеорияИнформационнаСкорост.md  (~70 pages)
│   │   ├── Резюме.md            (Summary, 3 pages)
│   │   └── ЧатКопие.md          (Conversation log)
│   ├── insights/                # Specific insights (7 documents)
│   │   ├── QA.md
│   │   ├── КритичноПрозрение_GW.md
│   │   ├── ФазовиПреходиВакуум.md
│   │   ├── УниверсалностФормули.md
│   │   ├── EM&Energy.md
│   │   ├── КонтактниТочки.md
│   │   └── МащабнаНесъвместимост.md
│   └── final/                   # Final documentation (4 documents)
│       ├── ФиналноОбобщение.md  (~50 pages)
│       ├── ЕксперименталниПротоколи.md  (~40 pages)
│       ├── МатематическаФормализация.md (~35 pages)
│       └── ОкончателноОбобщение.md
│
└── en/                          # English (translations & summaries)
    ├── core/                    # Core research documents
    │   ├── 01_MultipleInformationSpaces.md
    │   └── 02_Summary.md
    ├── insights/                # Specific insights
    │   ├── 02_MeasurementAsProjection.md
    │   ├── 03_VacuumPhaseTransitions.md
    │   ├── 04_UniversalityOfFormulas.md
    │   ├── 05_EMConfinement.md
    │   ├── 06_ContactPoints.md
    │   └── 07_ScaleIncompatibility.md
    └── final/                   # Final documentation
        ├── FinalSummary.md
        ├── ExperimentalProtocols.md
        └── MathematicalFormalization.md

🔬 Key Results

Theoretical Achievements

Generalized Relativistic Framework

Every formula with c → Replace with Vmax_k
Special case: I_EM with Vmax = c

EM Confinement (Mathematically Proven)

Measurement → EM transition → v_measured ≤ c
Regardless of v_real!

Epistemological Confinement

Knowledge = EM records
→ There may be unknowable reality beyond EM

Experimental Predictions

Five testable predictions (2025-2033):

# Prediction Test Timeline Sensitivity
1 Energy anomalies at E > 10 TeV LHC precision energy balance 2025-2028 E_threshold ~ 10-20 TeV
2 CMB correlations beyond light horizon Statistical analysis of Planck data 2025-2031 Vmax_X/c > 10
3 Variable "constant" c Quasar spectroscopy (fine structure) 2025-2033 Δc/c ~ 10⁻⁶
4 Multi-messenger precursors LIGO, IceCube, Fermi correlation 2025-2030+ Δt ~ 1 second
5 Vacuum dispersion GRB arrival time vs energy 2025-2030+ E_Planck ~ 10¹⁸ GeV

Read more: Experimental Protocols

Philosophical Implications

Epistemology:

"Do the limits of our measurements define the limits of our reality?"

Answer: Perhaps NOT. Reality may be richer than what is measurable.

Ontology:

  • Multiple layers of reality
  • Information is more fundamental than matter
  • Time is emergent (number of EM cycles)

Read more: Final Summary


📖 Documentation

Total: 13 documents, ~320 pages

Core Research (2 documents, ~73 pages)

Specific Insights (7 documents, ~150 pages)

  1. Open Questions - Detailed analysis of fundamental questions
  2. Measurement as Projection - LIGO analysis and implications
  3. Vacuum Phase Transitions - Energy thresholds and mechanisms
  4. Universality of Formulas - Generalized relativistic framework
  5. EM & Energy - Connection between EM and energy transitions
  6. Contact Points - Energy transition mechanisms
  7. Scale Incompatibility - Scale, concentration, and topology

Final Documentation (4 documents, ~127 pages)

  • Final Summary (~50 pages) - Integration of all seven insights
  • Experimental Protocols (~40 pages) - 5 detailed experiments
  • Mathematical Formalization (~35 pages) - Theorems and proofs
  • Ultimate Summary (2 pages) - Final overview

🎯 Theory Status

✅ COMPLETE

The theory is:

  • Mathematically consistent - Theorems with proofs
  • Experimentally testable - 5 concrete predictions
  • Philosophically profound - Epistemological implications
  • Explanatory - Addresses mysteries (quantum gravity, dark matter/energy)

Explains Major Mysteries

Quantum Gravity:

Δλ = 10⁻¹⁰ - 10⁻³⁵ ≈ 10⁻¹⁰ m
Relative: Δλ/λ_Planck ~ 10²⁵
g_eff ~ exp(-10²⁵) → 0 (unreachable!)

Dark Matter:

λ_dark ~ 10³-10⁶ m (smooth at atomic scale)
λ_EM ~ 10⁻¹⁰ m
Contact point is dimensionally incompatible!

Dark Energy:

λ_Λ ~ 10²⁶ m (size of Universe)
Locally: effect ~ 10⁻³⁵ m/s² (negligible)
Globally: accelerates expansion

💡 Key Quote

"Reality is a multi-scale symphony. We hear only one octave - the scale of atoms. Other octaves exist, but are beyond our range."


👥 Authors & History

Original Insights: Philosophical reflections and analysis
Date: November 30, 2025
Version: 2.0 - Final formulation with seven insights
Language: Bulgarian (original), English (translations)


📜 License

This work is a theoretical framework for scientific discussion and research.


📞 Contact

For questions or discussions about this theory, please open an issue in this repository.


🔖 Project Status

Status: Project frozen at this stage pending emergence of new concepts
Last Updated: November 30, 2025
Next Steps: Awaiting new conceptual developments or experimental data


🙏 Acknowledgments

This theory emerged from deep philosophical reflections on the nature of measurement, the limits of knowledge, and the structure of reality.


Made with 🧠 and ❤️

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Theory of Information Speed: Proving that the speed of light (c) is a constraint of the electromagnetic information channel, not a universal physical limit. Includes 8 fundamental insights, mathematical formalization, experimental predictions, and Python simulation library.

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