Time Distortion Signatures at Proxima B Rodney Lee Arnold J

Time Distortion Signatures at Proxima B Rodney Lee Arnold Jr. A quantum simulation has revealed time distortion fields near Proxima B. This report interprets the findings through the lens of QRFT, SMT, QTIP, and the Infinity Principle. Anomalous time dilation fields around Proxima B Non-spherical, phase-inconsistent fluctuations in temporal metrics Asymmetric gravitational interference Entanglement and field resonance signatures Time emerges from entangled phase gradients Localized zones where phase collapse slows time Density thresholds altering local time flow Cross-dimensional gradient interference T(x) = ∂Φ/∂ψ · ∇E_ent g^res_{μν} = f(x) · T_{μν}^{QRFT} + Λ_ent · δ_{μν} Membrane formation due to resonance lock-in Potential decoherence voids near orbit Spinor-induced rotational warping of local vacuum Information remains, but is phase-inaccessible Proxima B as a convergence of resonance layers Confirmed 0425 Map entanglement oscillations Analyze spacetime layer around Proxima B Measure resonance gradients and tensor curvature Look for reflection or refraction phenomena The simulation reinforces QRFT's proposal that time is emergent, not fundamental. These distortions reflect entangled resonance geometry and validate aspects of QRFT, SMT, and QTIP. QRFT Field Signatures > Time Distortion Regions > Proxima B Node #0425B

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