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1905 vs 2022: How Two Einstein Papers Dissolve the Nobel's Nonlocality

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Zenodo2026-04-19 更新2026-05-26 收录
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The 2022 Nobel Prize in Physics consolidated the public narrative that quantum entanglementexperiments demonstrate the nonlocality of nature. We argue this conclusion rests on an implicitpremise — the ontological separability of spatially separated energy packets — that is not among Bell'sexplicitly stated assumptions. Combining two results Einstein published in 1905 — the discrete-energyphotoelectric effect and special relativistic proper time, which is zero along null worldlines —dissolves the premise as a direct consequence of the ontology rather than as an additional interpretivepostulate. Under this reading, entanglement correlations are the resolution of a single distributed causalstructure manifesting as two ticks in the observer's massive reference frame; no signal traverses thespatial gap because, in the photons' own frame, there is no gap to traverse. Locality is preserved,realism is preserved, and superdeterminism is not required. The Cosmic Bell Test is revisited: thechoice of measurement angle, sourced from a quasar photon, cannot be causally located billions ofyears in the past because in that photon's own frame no time has elapsed between quasar emission anddetector absorption. We make explicit both the structural strength of the argument and the singletechnical point — derivation of the cos2(θ) correlation form from Sincere Science first principles —that remains open and is sketched here as a working hypothesis via a reinterpretation of the Blochsphere as a map of resolution possibilities rather than a physical state.

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2026-04-19
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