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June 19, 20260 citationsOpen Access

chi-Space and the phi→chi Boundary Black Holes, Metric Anisotropy, and Lorentz Invariance Violation within the Framework of FKGP 4.0

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PTPavel Trojan

Key Points

  • This research aims to analyze the transition from the phi-channel to the chi-channel and its implications for black hole physics.
  • Identified the phi→chi boundary and its implications for measurable effects.
  • Analyzed the role of the Schwarzschild event horizon as a stationary boundary.
  • Proposed observational predictions based on theoretical findings.
  • The Terrell-Penrose effect indicates measurable degradation of the phi-channel as speed approaches c.
  • Physical constants within the chi-channel exhibit directional dependence, indicating metric anisotropy.
  • Eight observational predictions are proposed, including the behavior of Hawking radiation influenced by quantum entanglement.

Abstract

Within the Fractal Quantum Holographic Paradigm (FKGP 4.0) reality is structured into two projection channels: the phi-channel (observable spacetime, limiting speed c) and the chi-channel (informational substrate, effective speed Veff >> c). This paper extends the framework by identifying and analysing the phi→chi boundary — the physical surface at which the phi-channel collapses and the chi-substrate becomes the sole operative domain. We show that the Terrell-Penrose relativistic rotation effect is a measurable precursor of phi-channel degradation at v→c; that the Schwarzschild event horizon constitutes a stationary phi→chi boundary; and that in both cases physical constants, ordinarily isotropic as properties of the chi-substrate, acquire apparent directional dependence because the phi-channel projection is metrically anisotropic. The interior of a black hole is identified as chi-space — a fully independent manifold, not merely a transmission channel. A five-dimensional topological defect projected into 3+1 spacetime yields a visible fractal signature of dimension 1.05 (derived from the FKGP barrier dimension D1 = 2.05). Lorentz invariance violation (LIV) is proposed as the dynamical mechanism enabling smooth phi→chi transition without divergence. Hawking radiation is reinterpreted as a weak chi→phi leakage mediated by quantum entanglement on the horizon. Eight falsifiable observational predictions are stated.

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Cite This Study

Pavel Trojan (2026) studied this question.

synapsesocial.com/papers/6a34df4a65a5b0777af2e724https://doi.org/10.5281/zenodo.20735615
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Fractal Quantum Holographic Paradigm (FQGP) 5.02026
  2. 2Neutrino Bell Test as a Probe of the chi-Channel Protocol, Predictions, and Falsifiable Criteria within FQGP 4.02026
  3. 3Quantum Entanglement as a Projection of the Informational chi-Channel Theoretical Foundation and Experimental Verification within the Framework of the FQGP2026
  4. 4Fractal Quantum Holographic Paradigm (FQGP) 4.02026
  5. 5Chronotaxis: φ-Branching Geometry and the Structure of Quantum Spacetime2026