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Entropic Dynamics and Quantum "Measurement"
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The entropic dynamics (ED) approach to quantum mechanics is ideally suited to address the problem of measurement because it is based on entropic and Bayesian methods of inference that have been designed to process information and data. The approach succeeds because ED achieves a clear-cut separation between ontic and epistemic elements: positions are ontic while probabilities and wave functions are epistemic. Thus, ED is a viable realist psi-epistemic model. Such models are widely assumed to be ruled out by various no-go theorems. We show that ED evades those theorems by adopting a purely epistemic dynamics and denying the existence of an ontic dynamics at the subquantum level.
Forward citations
Cited by 2 Pith papers
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Entropic Dynamics approach to Relational Quantum Mechanics
A new mismatch measure in Entropic Dynamics yields relational quantum models whose constraints are expectation values, and a parametrized version evades the problem of time.
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A Time-Symmetric Variational Reformulation of Nonrelativistic Quantum Mechanics
A Fisher-information action can reproduce the Schrödinger equation, but the claimed derivation of the Born rule without collapse assumes the probability interpretation it purports to derive.
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