Discrete-event simulation of uncertainty in single-neutron experiments

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Abstract

A discrete-event simulation approach which provides a cause-and-effect description of many experiments with photons and neutrons exhibiting interference and entanglement is applied to a recent single-neutron experiment that tests (generalizations of) Heisenberg's uncertainty relation. The event-based simulation algorithm reproduces the results of the quantum theoretical description of the experiment but does not require the knowledge of the solution of a wave equation nor does it rely on concepts of quantum theory. In particular, the data satisfies uncertainty relations derived in the context of quantum theory.

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Raedt, H. D., & Michielsen, K. (2014). Discrete-event simulation of uncertainty in single-neutron experiments. Frontiers in Physics, 2, 1–12. https://doi.org/10.3389/fphy.2014.00014

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