arXiv · 2605.21243
Measurement of quantum states and nonlocal correlations
Abstract
One of the major remaining questions concerning foundations of the quantum mechanical theory is how superpositions are measured such that definite outcomes are obtained. Here a resolution to that issue is proposed. It is shown how to obtain state vectors associated with measurements on the separated subystems of an entangled state, revealing how a single wavefunction encodes a set of statistical measurement outcomes. The result explains why measurements on the subsystems give definite outcomes and why measurements on one subsystem are correlated with those on the other. It is therefore concluded that the theory of quantum mechanics, without nonlinearities or \emph{ad hoc} assertions, can explain both the mechanism of state vector collapse and the reason for the paradoxical nonlocal correlations between separated subsystems.The theory also explains why nonlocal correlations do not require any kind of interaction between the subsystems.
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Grgeory D. Scholes. 2026-05-20. Measurement of quantum states and nonlocal correlations. https://arxiv.org/abs/2605.21243
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