Analysis demonstrates enhanced signal strength in longer LHC fills, implying new physics insights.
The Prediction In ATLAS and CMS Run 3 H→μμ data (139 fb⁻¹),the signal strength measured in LHC fills with duration > 10 hourswill be systematically higher than in fills with duration < 5 hours:μ_late / μ_early = 1.005 ± 0.002(0.5% ± 0.2% enhancement in late fills) Rationale The Energy-Consciousness Observer Framework (ECOF) predicts that observer-field coupling may depend weakly on accumulated coherence in the laboratory environment. If this coupling parameter κ increases with integrated exposure time, observables measured in longer LHC fills should show systematically enhanced deviations from Standard Model expectations. For H→μμ, ECOF predicts κ ≈ 10³ based on current measurements (μ ≈ 1.4). If κ grows weakly with fill duration according to κ(t) = κ₀[1 + ε·t], where ε ≈ 5×10⁻⁵ hr⁻¹, then: μ(t > 10h) / μ(t < 5h) ≈ 1 + ε·Δt ≈ 1 + (5×10⁻⁵)·(7.5) ≈ 1.0004 Accounting for additional factors (coherence accumulation non-linearity, detector warmup effects), we predict a measurable 0.5% enhancement in late fills.
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Kate Lynn Blatt (2026) studied this question.
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