
For a hidden variable theory to be indistinguishable from quantum theory for finite precision measurements, it is enough that its predictions agree for some measurement within the range of precision. Meyer has recently pointed out that the Kochen-Specker theorem, which demonstrates the impossibility of a deterministic hidden variable description of ideal spin measurements on a spin 1 particle, can thus be effectively nullified if only finite precision measurements are considered. We generalise this result: it is possible to ascribe consistent outcomes to a dense subset of the set of projection valued measurements, or to a dense subset of the set of positive operator valued measurements, on any finite dimensional system. Hence no Kochen-Specker like contradiction can rule out hidden variable theories indistinguishable from quantum theory by finite precision measurements in either class.
Typo corrected. Final version: to appear in Phys. Rev. Lett
Quantum Physics, Quantum computation, Kochen-Specker theorem, FOS: Physical sciences, Quantum measurement theory, state operations, state preparations, measurements, Quantum Physics (quant-ph)
Quantum Physics, Quantum computation, Kochen-Specker theorem, FOS: Physical sciences, Quantum measurement theory, state operations, state preparations, measurements, Quantum Physics (quant-ph)
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