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January 25, 20260 citationsOpen Access

The Matter Trilogy: A Zero-Parameter Hardware Audit of the Proton Radius, Neutron Lifetime, and Mass Ratio (feat. The Electron Cursor Hypothesis)

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HGHeiko Grimberg

Key Points

  • This study aims to resolve discrepancies in particle physics through a zero-parameter geometric approach to fundamental particles.
  • Utilized a zero-parameter geometric framework to analyze particle properties.
  • Applied geometric invariants to derive physical observables without fitting parameters.
  • Introduced the Unified Chronofractal Field to explain interactions within a discrete lattice.
  • Identified the muon as a high mass-density particle interacting with the vacuum.
  • Resolved neutron lifetime discrepancies using volumetric time dilation concepts.
  • Derived the proton-electron mass ratio with high precision, aligning closely with CODATA values.

Abstract

This research paper presents a unified, zero-parameter geometric resolution to three of the most persistent discrepancies in modern particle physics: the Proton Radius Puzzle, the Neutron Lifetime Anomaly, and the origin of the Proton-Electron Mass Ratio. Operating within the framework of the Unified Chronofractal Field (UCF), this study demonstrates that fundamental particles are not isolated entities in a passive vacuum, but topological defects interacting with a discrete, 14-mode Bravais lattice ("Lattice 14"). By applying a strict k=0 (Zero-Parameter) constraint, we derive the exact magnitude of these physical observables solely from geometric invariants (π, ν, and integer lattice modes), without fitting parameters. UPDATE v12. 1: This release includes Appendix E and the "Electron Cursor Visualization", defining the geometric hardware architecture of the lepton sector. Key Derivations & Results: The Proton Radius Puzzle (Geometric Compression) Standard QED cannot explain the 4% discrepancy between muon and electron measurements. The UCF identifies the muon as possessing sufficient mass density to couple with the vacuum's "Spin-Topology" limit. Formula: Γₚ = 1 - 1/8π ≈ 0. 9602 (Matches PSI data >99. 99%) The Neutron Lifetime Anomaly (Volumetric Lattice Drag) The gap between "Beam" and "Bottle" experiments is resolved by identifying motion through the lattice as a volumetric time dilation source. Formula: Γₙ = 1 + 1/27π ≈ 1. 0118 (Exact resolution of the 10s gap) The Proton-Electron Mass Ratio (Integer Hardware) Mass is emergent from integer cluster locks of the lattice core (108°). The ratio is derived as the sum of Hardware Dimensions acting on the Core plus a fractal dimensional residue. Formula: μ = 17 * 108 + ν⁴ ≈ 1836. 146 (Matches CODATA to 99. 9996%) NEW: The Electron Cursor Hypothesis (Lepton Interface) We derive the electron not as a particle, but as the active Read/Write Cursor of the vacuum hardware. Its mass is the geometric inverse of the proton's volumetric saturation, representing the energy cost of a surface interface. Definition: Electron = Lattice Surface / Proton = Lattice Volume. Implications This document confirms that the vacuum possesses a rigid geometric microstructure. Anomalies are not errors, but deterministic interactions with the Geometry of Spacetime. The universe operates on a fixed hardware code: Proton as Storage, Electron as Access.

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Cite This Study

Heiko Grimberg (2026) studied this question.

synapsesocial.com/papers/6975b20efeba4585c2d6d842https://doi.org/10.5281/zenodo.18351648
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