Empirical State Determination of Entangled Two-Level Systems and Its Relation to Information Theory

Foundations of Physics 29 (12):1963-1975 (1999)
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Abstract

Theoretical methods for empirical state determination of entangled two-level systems are analyzed in relation to information theory. We show that hidden variable theories would lead to a Shannon index of correlation between the entangled subsystems which is larger than that predicted by quantum mechanics. Canonical representations which have maximal correlations are treated by the use of Schmidt and Hilbert-Schmidt decomposition of the entangled states, including especially the Bohm singlet state and the GHZ entangled states. We show that quantum mechanics does not violate locality, but does violate realism

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References found in this work

Interpreting the Quantum World.Jeffrey Bub - 1998 - British Journal for the Philosophy of Science 49 (4):637-641.
The empirical determination of quantum states.William Band & James L. Park - 1970 - Foundations of Physics 1 (2):133-144.
Surprises in Theoretical Physics.Rudolf Peierls - 1981 - British Journal for the Philosophy of Science 32 (3):309-311.
Instruction.[author unknown] - 1997 - Philosophy and Culture 24 (1):87-89.

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