Progress of Theoretical Physics · 1991 · 47 citations · 0 references
Quantum DynamicQuantum ScienceQuantum Mechanical ProbabilitiesEngineeringNonrelativistic Quantum MechanicsPhysicsQuantum Statistical MechanicsNatural SciencesQuantum Mechanical PropertyUncertainty PrincipleQuantum TheoryProbability TheoryQuantum PhysicsQuantum SystemQuantum EntanglementMeasurement ProblemTheoretical Aspect
A theoretical aspect of quantum mechanical probabilities is studied. In nonrelativistic quantum mechanics (NRQM) for a particle, Schrödinger's wave function assigns probabilities to possible places where the particle is found on a surface (hypersurface in Newtonian spacetime) of constant time. We may then ask if quantum mechanical probabilities can be defined for an exhaustive set of exclusive outcomes of observations made on a surface on which Newtonian time is not constant. Such a question may be said to belong to the study of the role of time in NRQM in a broad sense. Specifically we investigate the theoretical possibility of a probabilistic description of (I) where and how many times the particle intersects the surface, and of (II) where and how many times the particle is found on the surface. For each case we formulate two conditions for the success of a probabilistic description. They are the classifiability condition and the no-interference condition, both of which are conditions on the propagator of the particle. For each case it is proved that the former condition does not hold and that consequently a probabilistic description is theoretically impossible either for (I) or for (II).