Two-proton emitters with diproton-correlated initial states can deliver spin-entangled proton pairs exceeding local-hidden-variable bounds in democratic three-body emission.
Bell, Physics1, 195 (1964)
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Quantum analytical mechanics completes standard quantum mechanics by deriving equations of motion for stochastic trajectories of hidden variables in the configuration space of quantum systems.
citing papers explorer
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Two-proton emission as source of spin-entangled proton pairs
Two-proton emitters with diproton-correlated initial states can deliver spin-entangled proton pairs exceeding local-hidden-variable bounds in democratic three-body emission.
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Quantum Analytical Mechanics: Quantum Mechanics with Hidden Variables
Quantum analytical mechanics completes standard quantum mechanics by deriving equations of motion for stochastic trajectories of hidden variables in the configuration space of quantum systems.