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October 1, 1963American Journal of Physics180 citations

Role of the Observer in Quantum Theory

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ASAbner Shimony

Key Points

  • To critically assess major interpretations of state changes during measurement and evaluate the fundamental role of the observer in quantum mechanics.
  • Analyzed the von Neumann, London, and Bauer interpretation attributing quantum state changes to registration in human consciousness.
  • Evaluated Niels Bohr's framework linking quantum descriptions directly to the experimental apparatus.
  • Examined theoretical consistency, psychological plausibility, and ontological implications of each model.
  • Consciousness-based measurement models remain theoretically consistent but lack psychological evidence and fail to explain intersubjective consensus among multiple observers.
  • Bohr's experimental-context approach provides useful operational guidelines but sacrifices a unified ontology across physical, mental, microscopic, and macroscopic phenomena.
  • A coherent physical description of microphysical measurements is fundamentally unlikely under the present formulation of quantum theory.

Abstract

In quantum theory as it is currently formulated the measurement of an observable quantity of a physical system is the occasion for a change of state of the system, except when the state prior to the measurement is an eigenstate of the observable. Two proposals for interpreting this kind of change are examined in detail, and several variant proposals are considered briefly. According to the interpretation proposed by von Neumann, and by London and Bauer the change of state is completed only when the result of the observation is registered in the observer's consciousness. Although this interpretation appears to be free from inconsistencies, it is not supported by psychological evidence and it is difficult to reconcile with the intersubjective agreement of several independent observers. According to the interpretation proposed by Bohr, the change of state is a consequence of the fundamental assumption that the description of any physical phenomenon requires reference to the experimental arrangement. Bohr's proposals are valuable as practical maxims in scientific activity, but they are shown to involve the renunciation of any ontological framework in which all types of events—physical and mental, microscopic and macroscopic—can be located. It is concluded that a satisfactory account of the observation of microphysical quantities is unlikely if the present formulation of quantum theory is rigorously maintained.

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Cite This Study

Abner Shimony (1963) studied this question.

synapsesocial.com/papers/6a11d3c335a4eec8fedce91ahttps://doi.org/10.1119/1.1969073
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