16 results for “topic:fundamental-physics”
Raw RINEX validation of distance-structured correlations in GNSS atomic clocks. Detects exponential decay signatures (λ≈1-4 km) in 539 stations using SPP with broadcast ephemerides, eliminating processing artifact hypothesis. Shows E-W>N-S anisotropy, CMB alignment, orbital coupling. TEP-GNSS Paper 3.
25-year analysis of 165.2M GNSS clock measurements revealing persistent velocity-dependent correlations, orbital coupling (r=-0.888), 18.6-year lunar nutation detection, and CMB frame alignment, confirming decadal stability of TEP signatures
Multi-center analysis of 62.7M GNSS clock measurements revealing distance-structured correlations with exponential decay (λ = 3,330-4,549 km), consistent with screened scalar field predictions from the Temporal Equivalence Principle
Informational interpretation of quantum mechanics, gravity, and cosmology based on coherence-driven compression. Includes a falsifiable adaptive-interference protocol.
# LQG First-Principles Fine-Structure Constant (Research-stage)
Independent optical test of the Temporal Equivalence Principle using 11 years of LAGEOS satellite laser ranging data, revealing distance-structured correlations and spectral signatures consistent with conformal scalar field coupling
Official repository for the Modular Substrate Theory (MST). Unifying alpha, H0, e, and zeta(0) via a Z/6Z substrate. Featuring 110-digit precision audits, a 10^-14 exact derivation of the fine-structure constant, and the resolution of the Hubble tension.
Covariant reformulation of relativity with dynamic time as a field and emergent light speed. Proposes two-metric geometry (gravitational + causal), synchronization holonomy as key observable, and falsifiable experimental tests. Addresses cosmological tensions while preserving local Lorentz invariance.
A unified theoretical framework proposing that gravity is fundamentally an electrical phenomenon, supported by logical reconstruction, physical interpretation, and applied consequences for matter, energy, and cosmic structure.
🕰️ Analyze 25 years of GNSS clock data to uncover correlations, ensuring reliable timekeeping across global networks.
Revolutionary method to derive fundamental physics parameters from observed constants using iterative backward-forward reconstruction. Predicting 31% Higgs coupling anomalies and new physics beyond Standard Model.
Universe Cycle - A Different Lens
An open, rigorous, multi-tier conceptual framework linking reflexive mathematics, physical systems, and emergent coherence structures.
Spectral Electromagnetic Confinement Theory (SECT). Teoría de campo clásica efectiva para solitones electromagnéticos topológicos autoconfinados, independiente de QCD/Higgs.
🔭 Validate the Temporal Equivalence Principle by analyzing 11 years of Satellite Laser Ranging data for precise optical tests.
🪐 Explore a new framework to complement existing science and clarify cosmic mysteries through innovative concepts and redefined perspectives.