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A spacetime ontology compatible with quantum mechanics
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The ontology proposed in this paper is aimed at demonstrating that it is possible to understand the counter-intuitive predictions of quantum mechanics while still retaining much of the framework underlying classical physics, the implication being that it is better to avoid wandering into unnecessarily speculative realms without the support of conclusive evidence. In particular, it is argued that it is possible to interpret quantum mechanics as simply describing an external world consisting of familiar physical entities (e.g., particles or fields) residing in classical 3-dimensional space (not configuration space) with Lorentz covariance maintained.
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Cited by 1 Pith paper
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Incorporating action and reaction into a particle interpretation for quantum mechanics -- Dirac case
A Dirac spinor particle model with particle-to-field back-reaction is shown, via a gauge transformation and a statistical postulate, to reduce to the standard Dirac equation.
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