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  • Title: ➤  The Unbound Static Correlation Model
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  • Internet Archive ID: osf-registrations-865qu-v1

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The Unbound Static Correlation Model (USCM), a synthesis of highly regarded physics establishing atemporal unbound static correlations as the foundational default—not through new science but through integration of existing pillars. The Big Bang singularity necessitates a pre-spatial source of high energy and information, as classical models predict a breakdown of time at t=0, resolved in quantum cosmology via atemporal wave functions (DeWitt, 1967). Likewise, quantum phenomena such as entanglement and non-locality exhibit atemporal and pre-spatial qualities incompatible with bound spacetime constraints. This paper reconciles these phenomena while unifying general relativity and quantum mechanics. At its core is the distinction between the unbound perspective—atemporal, pre-spatial, and purely correlational without activity or manifold—and the bound 3D+1 view, which imposes time, dynamics, and biases through requirements of location and timeframe. This frames atemporality as the null hypothesis, grounded in the logical necessity that absence of space-time precludes intrinsic time or space, with finite/infinite duality resolving infinite possibilities as finite outcomes, forced into location and timeframe. Two principles enforce this: spatial restrictions limit unbound states to boundary encodings (Principle 1: a 3D+1 entity like spacetime cannot exist in a state incapable of supporting its architecture), forcing atemporality as the inherent state with only fixed correlations (Principle 2: states lacking such architecture are atemporal, unbound from location and timeframe). These principles stand as simple logical necessities; borrowed mechanisms like holographic bounds enhance their application. USCM resolves 12 enigmas as bound artifacts—7 via principles alone without cosmology (e.g., measurement problem as passive mapping tied to observer effect via non-sentient interactions, arrow of time as relational asymmetry linking to problem of time, non-locality from static correlations interconnecting with entanglement) and 5 extended (e.g., information paradox via preserved encoding linking to singularity as an information state, dark energy from entropy correlations tying to cosmic expansion, hierarchy problem via scale-dependent couplings interconnecting with unification)—supported by empirical alignments like Bell violations, double-slit visibility, quantum eraser retroactivity, and recent Event Horizon Telescope/JWST/DESI data, including 2024 EHT (~42 microarcseconds ring diameter with ~30° brightness peak shift and southern asymmetry), JWST Hubble tension (H_0 ~72.6 km/s/Mpc), and DESI dark energy drifts (w(z) ~0.1). These EHT alignments, building on 2018 observations of approximately 52 microarcseconds, emphasize relative observables such as δr ∼ 1e-5 rad and ≈3% azimuthal asymmetry from entropy scaling δS ≈ N log(2) δA (δA ∼ r_h l_p, r_h ≈ 1e10 m for Sgr A*, tunable to refined data). Unification emerges from static symmetries projecting to gauges and curvature, with scale-dependent hierarchies testable via LHC anomalies and horizon effects. Implications include boosts to fields like string theory (atemporal 1D strings), loop quantum gravity (nonlocal echoes), and quantum cosmology (Wheeler-DeWitt extensions), plus quantum computing enhancements (holographic error correction, qudits from duality, atemporal algorithms). Distinctive predictions include photon-ring asymmetries, gravitational wave echoes, and dark energy drifts, operationalized through production simulations achieving high fidelity; pre-registered signatures with acceptance/null criteria detailed in Section 4. Modularity ensures adaptability to evidence, with low-speculation contingencies explained by synthesis of well-regarded works like causal set boundaries or spontaneous collapse integrations, further strengthened by principles' logical foundations and ~0-2 parameters, and ethical considerations for risks associated with quantum advances. This model minimizes speculation as a synthesis of well-established physics, offering a testable unification roadmap grounded in objective realism.

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