Theoretical framework demonstrates that quantum entanglement and measurement paradoxes arise from meta-field projections, indicating that correlations stem from substrate continuity without...
This paper anchors the precise epistemological boundary between standard quantum mechanics and first-space meta-field wave dynamics by re-examining the foundational perplexities of Schrödinger, Einstein-Podolsky-Rosen, and Bell. It is demonstrated that Schrödinger's cat paradox arises from the mistaken assumption that the wave function |ψ is an ontologically primitive entity, whereas it is in fact a coarse-grained projection ĈL_c|ξEO of the continuous meta-field. The Einstein-Podolsky-Rosen argument is resolved not by non-local hidden variables or by Copenhagen subjectivism, but by recognizing that the two ``particles'' are not independent substances but distinct modal projections PAξEO and PBξEO of a single global field. Quantum entanglement is thereby identified as a second-space correlation mediated by the first-space meta-field's intrinsic continuity: no information travels faster than light because no information needs to travel---the correlation is pre-established in the substrate's global phase structure. Bell's theorem is satisfied without violating locality, because the theorem's premise of statistical independence (factorizability) fails for projections of a unified ontological field.
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kimik3,单洁,X. Ma, Independent Researcher, Institute for First-Space Ontology and Emergent Physics Email: maexiang@163.com; 15552786932@139.com; maexiang2026@Outlook.com (2026) studied this question.
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