Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1979 · 49 citations · 3 references
EngineeringMeasurementQuantum MeasurementQuantum SensingMeasurement ProblemQuantum ComputingQuantum SystemsQuantum Mechanical PropertyQuantum PhysicsQuantum EntanglementClassical ApparatusQuantum SciencePhysicsQuantum InformationAtomic PhysicsQuantum Measurement ProcessQuantum DecoherenceNatural SciencesNew ApproachQuantum SystemClassical IntegrityTheoretical Considerations
We develop further a new approach to the quantum measurement process. In this approach, which we proposed in a recent paper, the apparatus is treated as a classical system; however, the classical apparatus is directly coupled to the quantum system. A principle of integrity, which requires that the observables of the classical apparatus retain their classical integrity, is introduced. We examine the constraints which this principle places upon the coupling between the apparatus and the quantum system. To illustrate our approach we use a model loosely based on the Stern-Gerlach experiment. For this model we exhibit a coupling which satisfies the principle of integrity.
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The Intrinsic Parity of Elementary Particles
G. C. Wick, A. S. Wightman, E. P. Wigner · Physical Review · 1952 · 647 citations
Quantum Science, Superselection Rules, Quantum Computing +14