On the Theory of Measurement in Quantum Mechanical Systems

Philosophy of Science 27 (2):115-133 (1960)
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Abstract

This paper is concerned with the description of the process of measurement within the context of a quantum theory of the physical world. It is noted that quantum mechanics permits a quasi-classical description of those macroscopic phenomena in terms of which the observer forms his perceptions. Thus, the process of measurement in quantum mechanics can be understood on the quasi-classical level by transcribing from the strictly classical observables of Newtonian physics to their quasi-classical counterparts the known rules for the measurement of the former. The remaining physical problem is the delineation of the circumstances in which the correlation of a peculiarly quantum mechanical observable A with a classically measurable observable B can result in a significant measurement of A. This is undertaken within the context of quantum theory. The resulting clarification of the process of measurement has important implications relative to the philosophic interpretation of quantum mechanics.

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Citations of this work

Measurements and quantum states: Part I.Henry Margenau - 1963 - Philosophy of Science 30 (1):1-16.
Measurements and quantum states: Part II.Henry Margenau - 1963 - Philosophy of Science 30 (2):138-157.
Von Neumann's argument for the projection postulate.Joseph D. Sneed - 1966 - Philosophy of Science 33 (1/2):22-39.

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References found in this work

The Logic of Modern Physics.P. W. Bridgman - 1927 - Mind 37 (147):355-361.
Critical points in modern physical theory.Henry Margenau - 1937 - Philosophy of Science 4 (3):337-370.
The quantum theoretical concept of measurement.John L. McKnight - 1957 - Philosophy of Science 24 (4):321-330.
A reappraisal of the conceptual scheme of science.Peter Caws - 1957 - Philosophy of Science 24 (3):221-234.

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